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NSR database version of April 24, 2024.

Search: Author = G.Peaslee

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2022LI11      Nucl.Phys. A1021, 122424 (2022)

W.Lin, J.T.Wilkinson, K.E.Barrett, T.E.Barnhart, M.Gott, K.V.Becker, A.M.Clark, A.Miller, G.Brown, M.DeLuca, R.Bartsch, G.F.Peaslee, J.W.Engle

Excitation function of 54Fe(p, α)51Mn from 9.5 MeV to 18 MeV

NUCLEAR REACTIONS 54Fe(p, α), E=9.5-18 MeV; measured reaction products, Eγ, Iγ; deduced σ and uncertainties. Comparison with TALYS calculations, available data. The 11MV FN Tandem Van de Graaff accelerator at University of Notre Dame's (ND) Nuclear Science Laboratory (NSL).

doi: 10.1016/j.nuclphysa.2022.122424
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2765.


2021MC02      Nucl.Instrum.Methods Phys.Res. B493, 15 (2021)

S.R.McGuinness, S.J.Ferran, J.T.Wilkinson, C.S.Loveless, T.Anderson, D.Blankstein, A.M.Clark, S.L.Henderson, A.D.Nelson, C.S.Reingold, M.Skulski, S.E.Lapi, G.F.Peaslee

Production of 52Fe from symmetric complete fusion-evaporation reactions

NUCLEAR REACTIONS 27Al(28Si, 2np)52Fe, E=85.5 MeV; measured reaction products, Eγ, Iγ; deduced yields, σ. Comparison with PACE4 calculations.

doi: 10.1016/j.nimb.2021.02.008
Citations: PlumX Metrics


2021MC07      Sci. Rep. 11, 15749 (2021)

S.R.McGuinness, J.T.Wilkinson, G.F.Peaslee

Heavy-ion production of 77Br and 76Br

NUCLEAR REACTIONS Cr(28Si, X)74Kr/75Kr/76Kr/77Kr/78Kr/74Br/75Br/76Br/77Br/77Sr/77Rb/78Rb, E=70-95 MeV; Cu(16O, X)73Br/74Br/75Br/76Br/77Br/78Br/79Br/75Kr/76Kr/77Kr/78Kr/79Kr/76Rb/77Rb/78Rb/79Rb, E=40-80 MeV; measured reaction products, Eγ, Iγ; deduced yields. Comparison with PACE4 calculated values. A Source of Negative Ions from Cesium Sputtering (SNICS), the Nuclear Science Laboratory (NSL) at the University of Notre Dame on the 10 MV High Voltage Engineering Corporation FN Tandem Pelletron accelerator.

doi: 10.1038/s41598-021-94922-x
Citations: PlumX Metrics


2021SH10      Phys.Rev. C 103, 024614 (2021)

J.A.Shusterman, N.D.Scielzo, E.P.Abel, H.K.Clause, N.D.Dronchi, W.D.Frey, N.Gharibyan, J.A.Hart, C.S.Loveless, S.R.McGuinness, L.T.Sutherlin, K.J.Thomas, S.E.Lapi, J.D.Robertson, M.A.Stoyer, E.B.Norman, G.F.Peaslee, G.W.Severin, D.A.Shaughnessy

Aqueous harvesting of 88Zr at a radioactive-ion-beam facility for cross-section measurements

NUCLEAR REACTIONS 88Zr, 88Y(n, γ), E=thermal, [secondary 88Zr beam from 9Be(92Mo, X)88Zr, E=140 MeV/nucleon, and deposited in a water cell]; measured capture σ and resonance integrals by irradiating 88Zr deposited activity at the reactor facilities of the University of Missouri Research Reactor (MURR) and the McClellan Nuclear Research Center (MNRC) of UC-Davis. 9Be(92Mo, X)88Zr, E=140 MeV/nucleon; measured reaction fragments separated by A1900 separator, and detected by particle identification detector (PID) via energy-loss and time-of-flight measurements, finally deposited the secondary beam in the water target irradiation cell of an aqueous harvesting end station, and also deposited in a graphite puck at NSCL-MSU cyclotron facility. 81,82,83,84Rb, 81,84,85,86Sr, 84,85,86m,86,87m,87Y, 86,87,88,89Zr, 89,90,91Nb; measured Eγ, Iγ; deduced production rates in PID detector, and in activity collected in a graphite puck, with dominant component of 88Zr, and 88Y as its decay product.

doi: 10.1103/PhysRevC.103.024614
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset14697.


2021WI13      Appl.Radiat.Isot. 178, 109935 (2021)

J.T.Wilkinson, K.E.Barrett, S.J.Ferran, S.R.McGuinness, L.A.McIntosh, M.McCarthy, S.J.Yennello, J.W.Engle, S.E.Lapi, G.F.Peaslee

A heavy-ion production channel of 149Tb via 63Cu bombardment of 89Y

NUCLEAR REACTIONS 89Y(63Cu, X)149Tb, E=258 MeV; measured reaction products, Eγ, Iγ. 148,149,150Tb, 73Se, 74,75,76,77Br, 76As, 76,77Kr, 84,85,86,87,90Y, 81Rb, 83Sr, 86Zr; deduced EOB thick target yields. Comparison with PACE4 calculations, available data.

doi: 10.1016/j.apradiso.2021.109935
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2693.


2020TA08      Phys.Rev.Lett. 124, 192702 (2020)

W.P.Tan, A.Boeltzig, C.Dulal, R.J.deBoer, B.Frentz, S.Henderson, K.B.Howard, R.Kelmar, J.J.Kolata, J.Long, K.T.Macon, S.Moylan, G.F.Peaslee, M.Renaud, C.Seymour, G.Seymour, B.Vande Kolk, M.Wiescher, E.F.Aguilera, P.Amador-Valenzuela, D.Lizcano, E.Martinez-Quiroz

New Measurement of 12C+12C Fusion Reaction at Astrophysical Energies

NUCLEAR REACTIONS 12C(12C, X), E(cm)=2.2-5.0 MeV; measured reaction products, Eγ, Iγ; deduced σ, S-factor. Comparison with available data.

doi: 10.1103/PhysRevLett.124.192702
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2574.


2019AB12      J.Phys.(London) G46, 100501 (2019)

E.P.Abel, M.Avilov, V.Ayres, E.Birnbaum, G.Bollen, G.Bonito, T.Bredeweg, H.Clause, A.Couture, J.DeVore, M.Dietrich, P.Ellison, J.Engle, R.Ferrieri, J.Fitzsimmons, M.Friedman, D.Georgobiani, S.Graves, J.Greene, S.Lapi, C.S.Loveless, T.Mastren, C.Martinez-Gomez, S.McGuinness, W.Mittig, D.Morrissey, G.Peaslee, F.Pellemoine, J.D.Robertson, N.Scielzo, M.Scott, G.Severin, D.Shaughnessy, J.Shusterman, J.Singh, M.Stoyer, L.Sutherlin, A.Visser, J.Wilkinson

Isotope harvesting at FRIB: additional opportunities for scientific discovery

doi: 10.1088/1361-6471/ab26cc
Citations: PlumX Metrics


2017AG09      Phys.Rev. C 96, 024616 (2017)

E.F.Aguilera, E.Martinez-Quiroz, P.Amador-Valenzuela, D.Lizcano, A.Garcia-Flores, J.J.Kolata, A.Roberts, G.V.Rogachev, G.F.Peaslee, V.Guimaraes, F.D.Becchetti, A.Villano, M.Ojaruega, Y.Chen, H.Jiang, M.Febbraro, P.A.DeYoung, T.L.Belyaeva

Sub-barrier fusion of weakly bound 6Li with 58Ni

NUCLEAR REACTIONS 58Ni(6Li, X), E=10.8, 11.5, 12.7, 13.2, 13.7, 14.4 MeV, [secondary pure 6Li beam from 3He(6Li, 6Li), E=31-38 MeV reaction]; measured σ(θ, E) for evaporated protons at the University of Notre Dame FN tandem accelerator facility; deduced proton multiplicities, fusion σ(E) and total reaction σ(E). Proton angular distributions compared with statistical model calculations using PACE2 code. Comparison of fusion σ(E) data with previous experimental data for this reaction and for the 6Li+59Co, 6Li+64Zn, and 6Li+64Ni systems. Comparison with theoretical calculations using one-dimensional barrier penetration model (BPM) and coupled-channel (CC) method using optical model potentials.

doi: 10.1103/PhysRevC.96.024616
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2271.


2014MA49      Phys.Rev. C 90, 014616 (2014)

E.Martinez-Quiroz, E.F.Aguilera, D.Lizcano, P.Amador-Valenzuela, H.Garcia-Martinez, J.J.Kolata, A.Roberts, L.O.Lamm, G.Rogachev, V.Guimaraes, F.D.Becchetti, A.Villano, M.Ojaruega, M.Febbraro, Y.Chen, H.Jiang, P.A.DeYoung, G.F.Peaslee

Near- and sub-barrier fusion of the 7Be + 58Ni system

NUCLEAR REACTIONS 58Ni(7Be, X), E=16.4, 17.5, 19.4, 20.1, 20.9, 21.9 MeV; measured evaporated proton spectra, σ(E) for protons at Notre Dame TwinSol Radioactive Nuclear Beam facility and FM tandem accelerator; deduced total fusion σ(E) using proton multiplicities. Comparison with predictions of Wong's one-dimensional barrier-penetration model (BPM), and optical model potential (OMP). Comparison with previous experimental results for fusion σ(E) in 27Al(7Be, X), and fission σ(E) in 238U(7Be, F).

doi: 10.1103/PhysRevC.90.014616
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2129.


2014MB02      Sci. Rep. 4, 6706 (2014)

T.Mastren, A.Pen, G.F.Peaslee, N.Wozniak, S.Loveless, S.Essenmacher, L.G.Sobotka, D.J.Morrissey, S.E.Lapi

Feasibility of Isotope Harvesting at a Projectile Fragmentation Facility: 67Cu

NUCLEAR REACTIONS H, O(67Cu, X), E=76 MeV/nucleon; measured reaction products; deduced the radiochemical yields. A proof-of-principle experiment, the National Superconducting Cyclotron Laboratory (NSCL).

doi: 10.1038/srep06706
Citations: PlumX Metrics


2013AG01      Phys.Rev. C 87, 014613 (2013)

E.F.Aguilera, E.Martinez-Quiroz, R.Chavez-Gonzalez, P.Amador-Valenzuela, D.Lizcano, A.Gomez-Camacho, J.J.Kolata, L.O.Lamm, A.Roberts, T.Spencer, F.D.Becchetti, H.Jiang, M.Ojaruega, P.A.DeYoung, G.F.Peaslee, J.Brown

Near-barrier fusion and total reaction of a proton-rich projectile: 3He+58Ni

NUCLEAR REACTIONS 58Ni(3He, X), (3He, 3He), E=10.2, 11.5, 12.7 MeV; measured proton and 3He spectra, σ(θ) at Notre Dame TwinSol facility; deduced integrated proton production σ, reduced fusion σ. Comparison with 58Ni+8Be and 58Ni+16O systems, and with PACE calculations.

doi: 10.1103/PhysRevC.87.014613
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1976.


2013MO12      Nucl.Phys. A909, 69 (2013)

S.Mosby, N.S.Badger, T.Baumann, D.Bazin, M.Bennett, J.Brown, G.Christian, P.A.DeYoung, J.E.Finck, M.Gardner, J.D.Hinnefeld, E.A.Hook, E.M.Lunderberg, B.Luther, D.A.Meyer, M.Mosby, G.F.Peaslee, W.F.Rogers, J.K.Smith, J.Snyder, A.Spyrou, M.J.Strongman, M.Thoennessen

Search for 21C and constraints on 22C

NUCLEAR REACTIONS 9Be(22C, n21C), E=68 MeV/nucleon; measured En, In(\theta), E(20C fragment), I(20C fragment, \theta). 21,22C calculated double neutron halo nucleus low-lying levels, J, π, spectrometric factor using shell model, Goldhaber model with friction term. 21C deduced non-existence of bound state. 20C+n deduced scattering length.

doi: 10.1016/j.nuclphysa.2013.04.004
Citations: PlumX Metrics


2013QU01      Phys.Rev. C 88, 011603 (2013)

S.J.Quinn, A.Spyrou, A.Simon, A.Battaglia, M.Couder, P.A.DeYoung, A.C.Dombos, X.Fang, J.Gorres, A.Kontos, Q.Li, S.Lyons, B.S.Meyer, G.F.Peaslee, D.Robertson, K.Smith, M.K.Smith, E.Stech, W.P.Tan, X.D.Tang, M.Wiescher

Probing the production mechanism of the light p-process nuclei

NUCLEAR REACTIONS 74Ge(p, γ)75As, E=1.6-4.2 MeV; measured Eγ, Iγ, σ(E) using the NSCL SuN detector at Notre Dame facility; deduced astrophysical S(E) factors, reaction rates at T9=0.10-10.0, cumulative mass fraction of 74Se in a Type II Supernova model. Comparison with previous experimental data, and with theoretical predictions using NON-SMOKER and TALYS nuclear reaction codes.

doi: 10.1103/PhysRevC.88.011603
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2046.


2013TH04      Acta Phys.Pol. B44, 543 (2013)

M.Thoennessen, Z.Kohley, A.Spyrou, E.Lunderberg, P.A.DeYoung, H.Attanayake, T.Baumann, D.Bazin, B.A.Brown, G.Christian, D.Divaratne, S.M.Grimes, A.Haagsma, J.E.Finck, N.Frank, B.Luther, S.Mosby, T.Nagi, G.F.Peaslee, W.A.Peters, A.Schiller, J.K.Smith, J.Snyder, M.Strongman, A.Volya

Observation of Ground-state Two-neutron Decay

RADIOACTIVITY 16Be, 26O(2n); measured decay products, En, In; deduced decay energy spectra. Comparison with calculated two-neutron separation energies, T1/2, widths.

doi: 10.5506/APhysPolB.44.543
Citations: PlumX Metrics


2012CH02      Phys.Rev.Lett. 108, 032501 (2012)

G.Christian, N.Frank, S.Ash, T.Baumann, D.Bazin, J.Brown, P.A.DeYoung, J.E.Finck, A.Gade, G.F.Grinyer, A.Grovom, J.D.Hinnefeld, E.M.Lunderberg, B.Luther, M.Mosby, S.Mosby, T.Nagi, G.F.Peaslee, W.F.Rogers, J.K.Smith, J.Snyder, A.Spyrou, M.J.Strongman, M.Thoennessen, M.Warren, D.Weisshaar, A.Wersal

Exploring the Low-Z Shore of the Island of Inversion at N=19

NUCLEAR REACTIONS Be(29Ne, X)28F/27F, E=62 MeV/nucleon; measured reaction products, TOF; deduced 28F ground state energy as resonance in the 27F+n continuum, binding energy. Comparison with USDA/USDB shell model predictions.

doi: 10.1103/PhysRevLett.108.032501
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Data from this article have been entered in the XUNDL database. For more information, click here.


2012LU07      Phys.Rev.Lett. 108, 142503 (2012)

E.Lunderberg, P.A.DeYoung, Z.Kohley, H.Attanayake, T.Baumann, D.Bazin, G.Christian, D.Divaratne, S.M.Grimes, A.Haagsma, J.E.Finck, N.Frank, B.Luther, S.Mosby, T.Nagi, G.F.Peaslee, A.Schiller, J.Snyder, A.Spyrou, M.J.Strongman, M.Thoennessen

Evidence for the Ground-State Resonance of 26O

RADIOACTIVITY 26O(2n) [from Be(27F, p)26O, E=82 MeV/nucleon];measured decay products, En, In. 26O; deduced decay energy spectrum, evidence for the ground state or resonance in neutron unbound nucleus, T1/2 limit. Comparison with theoretical calculations.

doi: 10.1103/PhysRevLett.108.142503
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1923. Data from this article have been entered in the XUNDL database. For more information, click here.


2012PE11      Phys.Rev. C 86, 019802 (2012)

W.A.Peters, T.Baumann, B.A.Brown, J.Brown, P.A.DeYoung, J.E.Finck, N.Frank, K.L.Jones, J.-L.Lecouey, B.Luther, G.F.Peaslee, W.F.Rogers, M.Thoennessen, J.A.Tostevin

Reply to "Comment on 'Neutron knockout of 12Be populating neutron-unbound states in 11Be'"

NUCLEAR STRUCTURE 11Be; reanalyzed decay energy curves, level, J, π, branching ratios for 9Be(12Be, n)11Be experiment in 2011Pe13, and in reply to 2012Fo21 comment.

doi: 10.1103/PhysRevC.86.019802
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2011AG15      Phys.Rev.Lett. 107, 092701 (2011)

E.F.Aguilera, P.Amador-Valenzuela, E.Martinez-Quiroz, D.Lizcano, P.Rosales, H.Garcia-Martinez, A.Gomez-Camacho, J.J.Kolata, A.Roberts, L.O.Lamm, G.Rogachev, V.Guimaraes, F.D.Becchetti, A.Villano, M.Ojaruega, M.Febbraro, Y.Chen, H.Jiang, P.A.DeYoung, G.F.Peaslee, C.Guess, U.Khadka, J.Brown, J.D.Hinnefeld, L.Acosta, E.S.Rossi, Jr., J.F.P.Huiza, T.L.Belyaeva

Near-Barrier Fusion of the 8B+58Ni Proton-Halo System

NUCLEAR REACTIONS 58Ni(8B, X)66As, E=22.4-26.9 MeV; measured reaction products, proton spectra; deduced fusion σ, fusion and breakup yields.

doi: 10.1103/PhysRevLett.107.092701
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1884.


2011PE13      Phys.Rev. C 83, 057304 (2011)

W.A.Peters, T.Baumann, B.A.Brown, J.Brown, P.A.DeYoung, J.E.Finck, N.Frank, K.L.Jones, J.-L.Lecouey, B.Luther, G.F.Peaslee, W.F.Rogers, A.Schiller, M.Thoennessen, J.A.Tostevin, K.Yoneda

Neutron knockout of 12Be populating neutron-unbound states in 11Be

NUCLEAR REACTIONS 9Be(12Be, n), E=90 MeV/nucleon, [12Be secondary beam from 9Be(18O, X), E=120 MeV/nucleon primary reaction]; measured E(n), I(n) by TOF using MONA array, n(10Be) coin. 11Be; deduced levels, J, π, resonances, σ, spectroscopic factor. 10Be; deduced levels from neutron decay of unbound resonances. Comparison with shell model calculations.

doi: 10.1103/PhysRevC.83.057304
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Data from this article have been entered in the XUNDL database. For more information, click here.


2009AG10      Phys.Rev. C 80, 044605 (2009)

E.F.Aguilera, E.Martinez-Quiroz, P.Rosales, J.J.Kolata, P.A.DeYoung, G.F.Peaslee, P.Mears, C.Guess, F.D.Becchetti, J.H.Lupton, Y.Chen

Hindrance of complete fusion in the 8Li+208Pb system at above-barrier energies

NUCLEAR REACTIONS 208Pb(8Li, 4n), (8Li, 5n), E(cm)=32.1, 33.0, 33.9, 34.8, 35.7, 36.6, 37.5 MeV; 212At, 211At; measured α spectra, fusion-evaporation σ, and excitation functions. Pulsed beam. Comparison with barrier-potential model (BPM) calculations.

doi: 10.1103/PhysRevC.80.044605
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1774.


2009ST20      Phys.Rev. C 80, 021302 (2009)

M.J.Strongman, A.Spyrou, C.R.Hoffman, T.Baumann, D.Bazin, J.Brown, P.A.DeYoung, J.E.Finck, N.Frank, S.Mosby, W.F.Rogers, G.F.Peaslee, W.A.Peters, A.Schiller, S.L.Tabor, M.Thoennessen

Disappearance of the N = 14 shell

NUCLEAR REACTIONS Be(26F, X)22N, E=85 MeV/nucleon; measured En and (fragment)(neutron)-coin spectrum. 22N; deduced levels, J, π. Level systematics of N=14, 15 C, N and O isotones. Comparison with shell-model calculations using WBTM and WBPM interactions.

doi: 10.1103/PhysRevC.80.021302
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Data from this article have been entered in the XUNDL database. For more information, click here.


2008CH07      Nucl.Phys. A801, 101 (2008)

G.Christian, W.A.Peters, D.Absalon, D.Albertson, T.Baumann, D.Bazin, E.Breitbach, J.Brown, P.L.Cole, D.Denby, P.A.DeYoung, J.E.Finck, N.Frank, A.Fritsch, C.Hall, A.M.Hayes, J.Hinnefeld, C.R.Hoffman, R.Howes, B.Luther, E.Mosby, S.Mosby, D.Padilla, P.V.Pancella, G.Peaslee, W.F.Rogers, A.Schiller, M.J.Strongman, M.Thoennessen, L.O.Wagner

Production of nuclei in neutron unbound states via primary fragmentation of 48Ca

NUCLEAR REACTIONS 9Be(48Ca, X)10Li/11,13Be/23O, E=60 MeV/nucleon; measured neutron decay energy spectra, (fragment)(neutron)-coin using sequential neutron decay spectroscopy technique. 10Li, 11,13Be, 23O observed unbound states.

doi: 10.1016/j.nuclphysa.2008.01.004
Citations: PlumX Metrics


2008HO03      Phys.Rev.Lett. 100, 152502 (2008)

C.R.Hoffman, T.Baumann, D.Bazin, J.Brown, G.Christian, P.A.DeYoung, J.E.Finck, N.Frank, J.Hinnefeld, R.Howes, P.Mears, E.Mosby, S.Mosby, J.Reith, B.Rizzo, W.F.Rogers, G.Peaslee, W.A.Peters, A.Schiller, M.J.Scott, S.L.Tabor, M.Thoennessen, P.J.Voss, T.Williams

Determination of the N = 16 Shell Closure at the Oxygen Drip Line

NUCLEAR REACTIONS Be(26F, 25O), E=85 MeV/nucleon; measured fragment, neutron energies and yields. 25O; deduced decay width.

doi: 10.1103/PhysRevLett.100.152502
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Data from this article have been entered in the XUNDL database. For more information, click here.


2007AM10      Eur.Phys.J. Special Topics 150, 1 (2007)

H.Amro, F.D.Becchetti, Y.Chen, H.Jiang, M.Ojaruega, M.J.Golobish, H.C.Griffin, J.J.Kolata, B.Skorodumov, G.Peaslee, P.A.DeYoung, P.Mears, D.Denby, J.Brown, J.D.Hinnefeld, A.M.Moro

7Be-induced α -transfer reaction on 12C

NUCLEAR REACTIONS 12C(7Be, 3He), E=34 MeV; measured σ and angular distributions.

doi: 10.1140/epjst/e2007-00250-4
Citations: PlumX Metrics


2007KO23      Phys.Rev. C 75, 031302 (2007)

J.J.Kolata, H.Amro, F.D.Becchetti, J.A.Brown, P.A.DeYoung, M.Hencheck, J.D.Hinnefeld, G.F.Peaslee, A.L.Fritsch, C.Hall, U.Khadka, Patrick J.Mears, P.O'Rourke, D.Padilla, J.Rieth, T.Spencer, T.Williams

Breakup of 6He incident on 209Bi near the Coulomb barrier

NUCLEAR REACTIONS 209Bi(6He, 2nα), E=22.5 MeV; measured En, Eα, nα-coin, σ(θ); deduced reaction mechanism features. 6He level deduced B(E2).

doi: 10.1103/PhysRevC.75.031302
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1541.


2006KO03      Nucl.Instrum.Methods Phys.Res. A557, 594 (2006)

J.J.Kolata, H.Amro, M.Cloughesy, P.A.DeYoung, J.Rieth, J.P.Bychowski, G.Peaslee

A large segmented neutron detector for reaction studies with radioactive beams near the Coulomb barrier

RADIOACTIVITY 252Cf(SF); measured neutron spectra, angular distributions.

doi: 10.1016/j.nima.2005.11.161
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2005BO36      Phys.Rev.Lett. 95, 132502 (2005)

P.Boutachkov, G.V.Rogachev, V.Z.Goldberg, A.Aprahamian, F.D.Becchetti, J.P.Bychowski, Y.Chen, G.Chubarian, P.A.DeYoung, J.J.Kolata, L.O.Lamm, G.F.Peaslee, M.Quinn, B.B.Skorodumov, A.Wohr

Doppler Shift as a Tool for Studies of Isobaric Analog States of Neutron-Rich Nuclei: Application to 7He

NUCLEAR REACTIONS 1H(6He, γ), E < 24 MeV; measured Eγ, Iγ; deduced IAS formation σ, σ(θ). 7Li deduced resonance parameters. Doppler-shift analysis technique.

doi: 10.1103/PhysRevLett.95.132502
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2005BO49      Eur.Phys.J. A 25, Supplement 1, 259 (2005)

P.Boutachkov, G.V.Rogachev, V.Z.Goldberg, A.Aprahamian, F.D.Becchetti, J.P.Bychowski, Y.Chen, G.Chubarian, P.A.DeYoung, J.J.Kolata, L.O.Lamm, G.F.Peaslee, M.Quinn, B.B.Skorodumov, A.Wohr

Isobaric analog states of neutron-rich nuclei. Doppler shift as a measurement tool for resonance excitation functions

NUCLEAR REACTIONS 1H(6He, n), E not given; measured Doppler-shifted Eγ, Iγ. 7Li deduced resonance features, IAS.

doi: 10.1140/epjad/i2005-06-014-4
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2005DE16      Phys.Rev. C 71, 051601 (2005)

P.A.DeYoung, P.J.Mears, J.J.Kolata, E.F.Aguilera, F.D.Becchetti, Y.Chen, M.Cloughesy, H.Griffin, C.Guess, J.D.Hinnefeld, H.Jiang, S.R.Jones, U.Khadka, D.Lizcano, E.Martinez-Quiroz, M.Ojaniega, G.F.Peaslee, A.Pena, J.Rieth, S.VanDenDriessche, J.A.Zimmerman

Two-neutron transfer in the 6He + 209Bi reaction near the Coulomb barrier

NUCLEAR REACTIONS 209Bi(6He, α), (6He, nα), E=23.1 MeV; measured Eα, Eν, nα-coin, angular distributions following residual nucleus decay; deduced two-neutron transfer σ.

doi: 10.1103/PhysRevC.71.051601
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2005RO37      Nucl.Instrum.Methods Phys.Res. B241, 977 (2005)

G.V.Rogachev, A.A.Aprahamian, F.D.Becchetti, P.Boutachkov, Y.Chen, G.Chubarian, P.A.DeYoung, A.Fomichev, V.Z.Goldberg, M.S.Golovkov, J.J.Kolata, Yu.Ts.Oganessian, G.F.Peaslee, M.Quinn, A.Rodin, B.B.Skorodumov, R.S.Slepnev, G.Ter-Akopian, W.H.Trzaska, A.Wohr, R.Wolski

Isobaric analog states as a tool for spectroscopy of exotic nuclei

NUCLEAR REACTIONS 1H(8He, 8He), E not given; measured recoil proton spectrum; deduced excitation function. 1H(6He, 6Li), E not given; measured neutron spectrum, nγ-coin; deduced excitation function. 7,9Li deduced resonance parameters. 7,9He deduced analog states features.

doi: 10.1016/j.nimb.2005.07.157
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2004CL02      Phys.Rev.Lett. 92, 172502 (2004)

R.R.C.Clement, D.Bazin, W.Benenson, B.A.Brown, A.L.Cole, M.W.Cooper, P.A.DeYoung, A.Estrade, M.A.Famiano, N.H.Frank, A.Gade, T.Glasmacher, P.T.Hosmer, W.G.Lynch, F.Montes, W.F.Mueller, G.F.Peaslee, P.Santi, H.Schatz, B.M.Sherrill, M.-J.van Goethem, M.S.Wallace

New Approach for Measuring Properties of rp-Process Nuclei

NUCLEAR REACTIONS H, C(34Ar, 33ArX), E=84 MeV/nucleon; measured Eγ, Iγ, (particle)γ-coin following neutron removal. 33Ar deduced levels, J, π, spectroscopic factors. 32Cl(p, γ), E=low; calculated astrophysical reaction rates.

doi: 10.1103/PhysRevLett.92.172502
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2004KO22      Phys.Rev. C 69, 047601 (2004)

J.J.Kolata, E.F.Aguilera, F.D.Becchetti, Y.Chen, P.A.DeYoung, H.Garcia-Martinez, J.D.Hinnefeld, J.H.Lupton, E.Martinez-Quiroz, G.Peaslee

Elastic scattering of 10Be on 208Pb near the Coulomb barrier

NUCLEAR REACTIONS 208Pb(10Be, 10Be), E=38.4-43.9; measured σ(θ); deduced optical model parameters, total reaction σ. Comparison with previous results.

doi: 10.1103/PhysRevC.69.047601
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2004RO20      Phys.Rev.Lett. 92, 232502 (2004)

G.V.Rogachev, P.Boutachkov, A.Aprahamian, F.D.Becchetti, J.P.Bychowski, Y.Chen, G.Chubarian, P.A.DeYoung, V.Z.Goldberg, J.J.Kolata, L.O.Lamm, G.F.Peaslee, M.Quinn, B.B.Skorodumov, A.Wohr

Analog States of 7He Observed via the 6He(p, n) Reaction

NUCLEAR REACTIONS 1H(6He, n), E=24 MeV; measured En, Eγ, nγ-coin; deduced excitation function. 7Li deduced levels, J, π, analog states. 7He deduced IAR features.

doi: 10.1103/PhysRevLett.92.232502
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2004RO42      Nucl.Phys. A746, 229c (2004)

G.V.Rogachev, A.Aprahamian, F.D.Becchetti, P.Boutachkov, Y.Chen, G.Chubarian, P.A.DeYoung, A.Fomichev, V.Z.Goldberg, M.S.Golovkov, J.J.Kolata, Yu.Ts.Oganessian, G.F.Peaslee, M.Quinn, A.Rodin, B.B.Skorodumov, R.S.Slepnev, G.Ter-Akopian, W.H.Trzaska, A.Wohr, R.Wolski

Structure of exotic 7He and 9He

NUCLEAR REACTIONS 1H(6He, n), E(cm) ≈ 1-3.3 MeV; 1H(8He, 8He), E* ≈ 15-20 MeV; measured σ(θ), excitation functions. 7,9Li, 7,9He deduced IAS features.

doi: 10.1016/j.nuclphysa.2004.09.036
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2003SA07      Phys.Rev. C 67, 024606 (2003)

P.Santi, J.J.Kolata, V.Guimaraes, D.Peterson, R.White-Stevens, E.Rischette, D.Bazin, B.M.Sherrill, A.Navin, P.A.DeYoung, P.L.Jolivette, G.F.Peaslee, R.T.Guray

Structure of the 10Li nucleus investigated via the 9Li(d, p)10Li reaction

NUCLEAR REACTIONS 2H(9Li, p), (13C, p), E=20 MeV/nucleon; measured particle spectra, (fragment)p-coin, angular distributions. 9,10Li deduced ground-state mass excess lower limits. 10Li deduced neutron decay branching ratio, resonance features. S800 spectrograph.

doi: 10.1103/PhysRevC.67.024606
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2001RO32      Phys.Rev. C64, 061601 (2001)

G.V.Rogachev, J.J.Kolata, F.D.Becchetti, P.A.DeYoung, M.Hencheck, K.Helland, J.D.Hinnefeld, B.Hughey, P.L.Jolivette, L.M.Kiessel, H.-Y.Lee, M.Y.Lee, T.W.O'Donnell, G.F.Peaslee, D.Peterson, D.A.Roberts, P.Santi, S.A.Shaheen

Proton Elastic Scattering from 7Be at Low Energies

NUCLEAR REACTIONS 1H(7Be, 7Be), E < 25.5 MeV; measured back-angle recoil proton spectra, σ(θ). 7Be(p, p), E=1-3.3 MeV; deduced excitation function. 8B deduced levels, J, π. Predicted 1+ state in 8B not found, astrophysical implication discussed. Thick target technique.

doi: 10.1103/PhysRevC.64.061601
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2001VA18      Nucl.Phys. A687, 140c (2001)

R.L.Varner, J.R.Beene, M.Chartier, J.F.Liang, D.Shapira, D.Bazin, B.Blank, B.Sherrill, M.Thoennessen, P.A.DeYoung, G.F.Peaslee

Excitation of the Isovector Giant Quadrupole Resonance in 208Pb by Coulomb Inelastic Scattering

NUCLEAR REACTIONS 90Zr, 208Pb(17O, 17O'), (36Ar, 36Ar'), E=150 MeV/nucleon; measured inelastic scattering σ, inelastic excitation yield, isovector giant quadrupole resonance, GDR features.

doi: 10.1016/S0375-9474(01)00613-3
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2000AG03      Phys.Rev.Lett. 84, 5058 (2000)

E.F.Aguilera, J.J.Kolata, F.M.Nunes, F.D.Becchetti, P.A.DeYoung, M.Goupell, V.Guimaraes, B.Hughey, M.Y.Lee, D.Lizcano, E.Martinez-Quiroz, A.Nowlin, T.W.O'Donnell, G.F.Peaslee, D.Peterson, P.Santi, R.White-Stevens

Transfer and/or Breakup Modes in the 6He + 209Bi Reaction Near the Coulomb Barrier

NUCLEAR REACTIONS 209Bi(6He, X), E=19.0, 22.5 MeV; measured light fragments energy spectra, σ(θ); deduced reaction mechanism features, mechanism for sub-barrier fusion enhancement.

doi: 10.1103/PhysRevLett.84.5058
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2000CO20      Phys.Rev. C61, 067602 (2000)

E.Colin, R.Sun, N.N.Ajitanand, J.M.Alexander, M.A.Barton, P.A.DeYoung, K.L.Drake, A.Elmaani, C.J.Gelderloos, E.E.Gualtieri, D.Guinet, S.Hannuschke, J.A.Jaasma, L.Kowalski, R.A.Lacey, J.Lauret, E.Norbeck, R.Pak, G.F.Peaslee, M.Stern, N.T.B.Stone, S.D.Sundbeck, A.M.Vander Molen, G.D.Westfall, L.B.Yang, J.Yee

Nuclear Disassembly in Violent Central Collisions at Intermediate Energies: (65-115)A MeV 40Ar + Cu, Ag, Au

NUCLEAR REACTIONS Cu, Ag, 197Au(40Ar, X), E=65-115 MeV/nucleon; measured fragments multiplicity, velocity, mass distributions; deduced rate of nuclear disassembly.

doi: 10.1103/PhysRevC.61.067602
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2000DE05      Phys.Rev. C61, 024603 (2000)

P.A.DeYoung, M.J.Goupell, B.V.Atallah, J.A.Haglund, P.L.Jolivette, M.K.MacDermaid, G.F.Peaslee, J.J.Kolata, E.D.Berners, D.Peterson, J.von Schwarzenberg, J.D.Hinnefeld

Evidence for Nonequilibrium Proton Emission in a Low-Energy Heavy-Ion Reaction

NUCLEAR REACTIONS 27Al(16O, X), E=72 MeV; measured light charged particles correlation functions; deduced source features, nonequilibrium proton emission.

doi: 10.1103/PhysRevC.61.024603
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2000DE48      Phys.Rev. C62, 047601 (2000)

P.A.DeYoung, B.Atallah, B.Hughey, P.L.Jolivette, M.Kern, G.F.Peaslee, V.Guimaraes, J.J.Kolata, D.Peterson, P.Santi, R.White-Stevens, E.F.Aguilera, E.Martinez-Quiroz, F.D.Becchetti, M.Y.Lee, J.A.Zimmerman, J.D.Hinnefeld, O.A.Capurro

Angular Momentum in the 6He + 209Bi Reaction Deduced from Isomer Ratio Measurements

NUCLEAR REACTIONS 209Bi(6He, 3n), E(cm)=18-27 MeV; measured isomer production ratio; deduced compound nucleus spin distribution features.

doi: 10.1103/PhysRevC.62.047601
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2000SU01      Phys.Rev.Lett. 84, 43 (2000)

R.Sun, E.Colin, N.N.Ajitanand, J.M.Alexander, M.A.Barton, P.A.DeYoung, K.L.Drake, A.Elmaani, C.J.Gelderloos, E.E.Gualtieri, D.Guinet, S.Hannuschke, J.A.Jaasma, L.Kowalski, R.A.Lacey, J.Lauret, E.Norbeck, R.Pak, G.F.Peaslee, M.Stern, N.T.B.Stone, S.D.Sundbeck, A.M.Vander Molen, G.D.Westfall, L.B.Yang, J.Yee

Balance of Mass, Momentum, and Energy in Splintering Central Collisions for 40Ar up to 115 MeV/Nucleon

NUCLEAR REACTIONS Cu, Ag, 197Au(40Ar, X), E=17-115 MeV/nucleon; measured fragments mass, charge, multiplicity, momentum, angular distributions. Comparison with statistical model.

doi: 10.1103/PhysRevLett.84.43
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2000SU12      Phys.Rev. C61, 061601 (2000)

R.Sun, E.Colin, N.N.Ajitanand, J.M.Alexander, M.A.Barton, P.A.DeYoung, K.L.Drake, A.Elmaani, C.J.Gelderloos, E.E.Gualtieri, D.Guinet, S.Hannuschke, J.A.Jaasma, L.Kowalski, R.A.Lacey, J.Lauret, E.Norbeck, R.Pak, G.F.Peaslee, M.Stern, N.T.B.Stone, S.D.Sundbeck, A.M.Vander Molen, G.D.Westfall, L.B.Yang, J.Yee

Isotropic Emission Components in Splintering Central Collisions: (17-115)A MeV 40Ar + Cu, Ag, Au

NUCLEAR REACTIONS Cu, Ag, 197Au(40Ar, X), E=17-115 MeV/nucleon; measured fragments mass and charge distributions, multiplicities, kinetic energy spectra, angular distributions; deduced reaction mechanism features. Sequential evaporation model.

doi: 10.1103/PhysRevC.61.061601
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1999PH01      Phys.Rev. C60, 054617 (1999)

L.Phair, L.Beaulieu, L.G.Moretto, G.J.Wozniak, D.R.Bowman, N.Carlin, L.Celano, N.Colonna, J.D.Dinius, A.Ferrero, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, W.C.Hsi, M.J.Huang, I.Iori, Y.D.Kim, M.A.Lisa, W.G.Lynch, G.V.Margagliotti, P.F.Mastinu, P.M.Milazzo, C.P.Montoya, A.Moroni, G.F.Peaslee, R.Rui, C.Schwarz, M.B.Tsang, K.Tso, G.Vannini, F.Zhu

Statistical Interpretation of the Correlation between Intermediate Mass Fragment Multiplicity and Transverse Energy

NUCLEAR REACTIONS 197Au(129Xe, X), E=30, 40, 50, 60 MeV/nucleon; measured light charged particles, intermediate mass fragments yields, multiplicities, transverse energies. Comparison with statistical model predictions.

doi: 10.1103/PhysRevC.60.054617
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1998CO03      Phys.Rev. C57, R1032 (1998)

E.Colin, R.Sun, N.N.Ajitanand, J.M.Alexander, M.A.Barton, P.A.DeYoung, A.Elmaani, C.J.Gelderloos, E.E.Gualtieri, D.Guinet, S.Hannuschke, J.A.Jaasma, L.Kowalski, R.A.Lacey, J.Lauret, E.Norbeck, R.Pak, G.F.Peaslee, M.Stern, N.T.B.Stone, S.D.Sundbeck, A.M.Vander Molen, G.D.Westfall, J.Yee

Splintering Central Collisions: Systematics of momentum and energy deposition for (17-115)A MeV 40Ar

NUCLEAR REACTIONS Cu, Ag, 197Au(40Ar, X), E=17-115 MeV/nucleon; measured light, intermediate, heavy fragments velocity, mass, angle, charge distributions; deduced reaction mechanism.

doi: 10.1103/PhysRevC.57.R1032
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1998DE50      Phys.Rev. C58, 3442 (1998)

P.A.DeYoung, B.Hughey, P.L.Jolivette, G.F.Peaslee, J.J.Kolata, V.Guimaraes, D.Peterson, P.Santi, H.C.Griffin, J.A.Zimmerman, J.D.Hinnefeld

Fusion of a Neutron Skin Nucleus: The 209Bi(6He, 4n) reaction

NUCLEAR REACTIONS, ICPND 209Bi(6He, 4n), E(cm)=23.5-30.7; measured production σ(E). Radioactive beam, activation technique. Comparison with statistical model.

doi: 10.1103/PhysRevC.58.3442
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC0508.


1998KO57      Phys.Rev.Lett. 81, 4580 (1998)

J.J.Kolata, V.Guimaraes, D.Peterson, P.Santi, R.White-Stevens, P.A.DeYoung, G.F.Peaslee, B.Hughey, B.Atalla, M.Kern, P.L.Jolivette, J.A.Zimmerman, M.Y.Lee, F.D.Becchetti, E.F.Aguilera, E.Martinez-Quiroz, J.D.Hinnefeld

Sub-Barrier Fusion of 6He with 209Bi

NUCLEAR REACTIONS 209Bi(6He, 3n), E(cm) ≈ 19-27 MeV; measured σ; deduced fusion σ, sub-barrier enhancement.

doi: 10.1103/PhysRevLett.81.4580
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2521.


1998PR01      Phys.Rev. C57, 1305 (1998)

D.Prindle, A.Elmaani, C.Hyde-Wright, W.Jiang, A.A.Sonzogni, R.Vandenbosch, D.Bowman, G.Cron, P.Danielewicz, J.Dinius, W.Hsi, W.G.Lynch, C.Montoya, G.Peaslee, C.Schwarz, M.B.Tsang, C.Williams, R.T.de Souza, D.Fox, T.Moore

Impact Parameter Dependence of Light Charged Particle Production in 25A MeV 16O on Tb, Ta, and Au and 35A MeV 14N on Sm and Ta

NUCLEAR REACTIONS 159Tb, 181Ta, 197Au(16O, X), E=25 MeV/nucleon; 154Sm, 181Ta(14N, X), E=35 MeV/nucleon; measured p-, d-, t-, α-spectra, multiplicities, σ(θ) vs impact parameter; deduced reaction mechanism features. Transport model calculations.

doi: 10.1103/PhysRevC.57.1305
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1998SH04      Phys.Rev. C57, 1508 (1998)

W.Q.Shen, M.B.Tsang, N.Carlin, R.J.Charity, J.Feng, C.K.Gelbke, W.C.Hsi, M.J.Huang, G.J.Kunde, M.-C.Lemaire, M.A.Lisa, W.G.Lynch, U.Lynen, Y.G.Ma, G.F.Peaslee, L.Phair, J.Pochodzalla, H.Sann, C.Schwarz, L.G.Sobotka, R.T.de Souza, S.R.Souza, W.Trautmann, C.Williams

Disappearance of Rotational Flow and Reaction Plane Dispersions in Kr + Au Collisions

NUCLEAR REACTIONS 197Au(84Kr, X), E=35, 55, 70, 100 MeV/nucleon; measured light charged particle σ(θ), dd(θ), tt(θ), αα(θ); deduced rotational flow energy dependence. 4π phoswich detector array.

doi: 10.1103/PhysRevC.57.1508
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1997DE23      Phys.Rev. C56, 244 (1997)

P.A.DeYoung, C.Dykstra, P.Gonthier, C.Mader, G.F.Peaslee, D.Peterson, R.Sedlar, S.Sundbeck, N.Shaw, G.Westfall, D.Craig, R.Lacey, T.Li, T.Reposeur, A.Vander Molen, J.Winfield, S.Yennello, A.Nadasen

Sensitivity of Small-Angle Correlations of Light Charged Particles to Reaction Mechanisms in the 16O + 27Al Reaction at 40 MeV/nucleon

NUCLEAR REACTIONS 27Al(16O, X), E=40 MeV/nucleon; measured pp-, pα-, dα, αα- correlation functions; deduced source lifetime features. 27Al, Ag, (32S, X), E=3.3-22.3 MeV; 12C, 27Al, 197Au(16O, X), E=5-94 MeV; 12C, Ag, 108Ag, 197Au(40Ar, X), E=8-60 MeV; 12C, 27Al, 59Co, 197Au(20Ne, X), E=30 MeV; 58Ni(α, X), E=30 MeV; 27Al, 122Sn(139Xe, X), E=31 MeV, 27Al, 197Au(14N, X), E=35-75 MeV; 58Ni, 115In, 197Au(12C, X), E=46.7 MeV; 108Ag(3He, X), E=66.7 MeV; 45Sc(36Ar, X), E=80-160 MeV; compiled small-angle correlation measurements. 4π CsI array.

doi: 10.1103/PhysRevC.56.244
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1997TS02      Phys.Rev. C55, R557 (1997)

M.B.Tsang, C.Williams, M.J.Huang, W.G.Lynch, L.Phair, D.R.Bowman, J.Dinius, C.K.Gelbke, D.O.Handzy, W.C.Hsi, G.J.Kunde, M.A.Lisa, G.F.Peaslee, A.Botvina, M.-C.Lemaire, S.R.Souza, G.Van Buren, R.J.Charity, L.G.Sobotka, C.Schwarz, U.Lynen, J.Pochodzalla, H.Sann, W.Trautmann, D.Fox, R.T.de Souza, N.Carlin

Fragment Multiplicity Dependent Charge Distributions in Heavy Ion Collisions

NUCLEAR REACTIONS 197Au(84Kr, X), E=35-400 MeV/nucleon; measured intermediate mass fragment element distributions dependence on the multiplicity of detected fragments.

doi: 10.1103/PhysRevC.55.R557
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1997WI06      Phys.Rev. C55, R2132 (1997); Comment Phys.Rev. C59, 550 (1999)

C.Williams, W.G.Lynch, C.Schwarz, M.B.Tsang, W.C.Hsi, M.J.Huang, D.R.Bowman, J.Dinius, C.K.Gelbke, D.O.Handzy, G.J.Kunde, M.A.Lisa, G.F.Peaslee, L.Phair, A.Botvina, M.-C.Lemaire, S.R.Souza, G.Van Buren, R.J.Charity, L.G.Sobotka, U.Lynen, J.Pochodzalla, H.Sann, W.Trautmann, D.Fox, R.T.de Souza, N.Carlin

Fragment Distributions for Highly Charged Systems

NUCLEAR REACTIONS 197Au(Kr, X), E=35, 55, 70, 100, 200, 400 MeV/nucleon; measured fragment charge distributions, mean transverse energy < E(t) >, rotational energy; deduced radial expansion velocities. Statistical model.

doi: 10.1103/PhysRevC.55.R2132
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1996BE75      Phys.Rev. C54, 2435 (1996)

M.Belkacem, P.F.Mastinu, V.Latora, A.Bonasera, M.D'Agostino, M.Bruno, J.D.Dinius, M.L.Fiandri, F.Gramegna, D.O.Handzy, W.C.Hsi, M.Huang, G.V.Margagliotti, P.M.Milazzo, C.P.Montoya, G.F.Peaslee, R.Rui, C.Schwarz, G.Vannini, C.Williams

Searching for the Nuclear Liquid-Gas Phase Transition in Au + Au Collisions at 35 MeV/nucleon

NUCLEAR REACTIONS 197Au(197Au, X), E=35 MeV/nucleon; analyzed critical behavior signals, experimental apparatus efficiency effects. Classical molecular dynamics calculations.

doi: 10.1103/PhysRevC.54.2435
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1996CO22      Phys.Rev.Lett. 77, 4508 (1996)

E.W.Cornell, T.M.Hamilton, D.Fox, Y.Lou, R.T.de Souza, M.J.Huang, W.C.Hsi, C.Schwarz, C.Williams, D.R.Bowman, J.Dinius, C.K.Gelbke, D.O.Handzy, M.A.Lisa, W.G.Lynch, G.F.Peaslee, L.Phair, M.B.Tsang, G.Van Buren, R.J.Charity, L.G.Sobotka, W.A.Friedman

Investigating the Evolution of Multifragmenting Systems with Fragment Emission Order

NUCLEAR REACTIONS 197Au(84Kr, X), E=70 MeV/nucleon; measured Be, C fragments correlated, uncorrelated yields vs difference velocity distribution; deduced thermally decaying source cooling evidence.

doi: 10.1103/PhysRevLett.77.4508
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1996DA07      Phys.Lett. 368B, 259 (1996)

M.D'Agostino, P.F.Mastinu, P.M.Milazzo, M.Bruno, D.R.Bowman, P.Buttazzo, L.Celano, N.Colonna, J.D.Dinius, A.Ferrero, M.L.Fiandri, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, D.Horn, W.C.Hsi, M.Huang, I.Iori, G.J.Kunde, M.A.Lisa, W.G.Lynch, L.Manduci, G.V.Margagliotti, C.P.Montoya, A.Moroni, G.F.Peaslee, F.Petruzzelli, L.Phair, R.Rui, C.Schwarz, M.B.Tsang, G.Vannini, C.Williams, and the Multics/Miniball Collaboration

Multifragment Production in Au + Au at 35 MeV/u

NUCLEAR REACTIONS 197Au(197Au, X), E=35 MeV/nucleon; measured fragment emission velocities vs θ, Z=4-10, two-fragment correlation; deduced emission mechanism for central collisions. Many-body trajectories.

doi: 10.1016/0370-2693(95)01473-X
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1996DA17      Phys.Lett. 371B, 175 (1996)

M.D'Agostino, A.S.Botvina, P.M.Milazzo, M.Bruno, G.J.Kunde, D.R.Bowman, L.Celano, N.Colonna, J.D.Dinius, A.Ferrero, M.L.Fiandri, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, D.Horn, W.C.Hsi, M.Huang, I.Iori, M.A.Lisa, W.G.Lynch, L.Manduci, G.V.Margagliotti, P.F.Mastinu, I.N.Mishustin, C.P.Montoya, A.Moroni, G.F.Peaslee, F.Petruzzelli, L.Phair, R.Rui, C.Schwarz, M.B.Tsang, G.Vannini, C.Williams

Statistical Multifragmentation in Central Au + Au Collisions at 35 MeV/u

NUCLEAR REACTIONS 197Au(197Au, X), E=35 MeV/nucleon; measured fragment charge distribution, kinetic energy per nucleon vs Z, two-fragment correlation function. Statistical multi-fragmentation model analysis.

doi: 10.1016/0370-2693(96)00008-1
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1996FE01      Phys.Rev. C53, R5 (1996)

A.Ferrero, I.Iori, A.Moroni, F.Petruzzelli, R.Scardaoni, L.G.Moretto, D.R.Bowman, M.Bruno, P.Buttazzo, L.Celano, N.Colonna, M.D'Agostino, J.D.Dinius, M.L.Fiandri, E.Fuschini, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, D.Horn, W.C.Hsi, M.Huang, G.J.Kunde, M.A.Lisa, W.G.Lynch, P.F.Mastinu, P.M.Milazzo, G.V.Margagliotti, C.P.Montoya, G.F.Peaslee, L.Phair, R.Rui, C.Schwarz, M.B.Tsang, G.Vannini, C.Williams

Reducibility and a New Entropic Term in Multifragment Charge Distributions

NUCLEAR REACTIONS Cu, 197Au(Xe, X), E=30 MeV/nucleon; measured charge distributions vs fragment multiplicity; deduced thermal scaling, reducibility features.

doi: 10.1103/PhysRevC.53.R5
Citations: PlumX Metrics


1996HA12      Phys.Rev. C53, 2273 (1996)

T.M.Hamilton, E.Cornell, D.Fox, Y.Lou, R.T.de Souza, M.J.Huang, W.C.Hsi, C.Schwarz, C.Williams, D.R.Bowman, J.Dinius, C.K.Gelbke, T.Glasmacher, D.O.Handzy, M.A.Lisa, W.G.Lynch, G.F.Peaslee, L.Phair, M.B.Tsang, G.Van Buren, R.J.Charity, L.G.Sobotka, A.A.Sonzogni, D.Prindle

Changing Source Characteristics During Multifragment Decay

NUCLEAR REACTIONS 197Au(84Kr, X), E=35, 55, 70 MeV/nucleon; measured charged particle multiplicities, (fragment)(fragment)-correlation, fragment velocities, σ (fragment E, theta); deduced spatial-temporal extent of the emitting source, dependence on fragment velocities.

doi: 10.1103/PhysRevC.53.2273
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1996HU10      Phys.Rev.Lett. 77, 3739 (1996)

M.J.Huang, R.C.Lemmon, F.Daffin, W.G.Lynch, C.Schwarz, M.B.Tsang, C.Williams, P.Danielewicz, K.Haglin, W.Bauer, N.Carlin, R.J.Charity, R.T.de Souza, C.K.Gelbke, W.C.Hsi, G.J.Kunde, M.-C.Lemaire, M.A.Lisa, U.Lynen, G.F.Peaslee, J.Pochodzalla, H.Sann, L.G.Sobotka, S.R.Souza, W.Trautmann

Mass Dependence of Directed Collective FLow

NUCLEAR REACTIONS 197Au(84Kr, X), E=200 MeV/nucleon; measured fragment collective sidewards flow per nucleon mass dependence; deduced momentum dependent nuclear mean field evidence. BUU model.

doi: 10.1103/PhysRevLett.77.3739
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1996MA26      Phys.Rev.Lett. 76, 2646 (1996)

P.F.Mastinu, M.Belkacem, M.D'Agostino, M.Bruno, P.M.Milazzo, G.Vannini, D.R.Bowman, N.Colonna, J.D.Dinius, A.Ferrero, M.L.Fiandri, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, D.Horn, W.C.Hsi, M.Huang, I.Iori, G.J.Kunde, M.A.Lisa, W.G.Lynch, G.V.Margagliotti, C.P.Montoya, A.Moroni, G.F.Peaslee, F.Petruzzelli, R.Rui, C.Schwarz, M.B.Tsang, C.Williams, V.Latora, A.Bonasera, and the Multics-Miniball Collaboration

Circumstantial Evidence for Critical Behavior in Peripheral Au + Au Collisions at 35 MeV/nucleon

NUCLEAR REACTIONS 197Au(197Au, X), E=35 MeV/nucleon; measured fragment charge, multiplicity distributions; deduced circumstantial evidence for critical behavior.

doi: 10.1103/PhysRevLett.76.2646
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1996MO02      Phys.Rev.Lett. 76, 372 (1996)

L.G.Moretto, L.Phair, R.Ghetti, K.Tso, N.Colonna, W.Skulski, G.J.Wozniak, D.R.Bowman, N.Carlin, M.Chartier, C.K.Gelbke, W.G.Gong, W.C.Hsi, Y.D.Kim, M.A.Lisa, W.G.Lynch, G.F.Peaslee, C.Schwarz, R.T.de Souza, M.B.Tsang, F.Zhu

Phase Coexistence in Multifragmentation ( Question )

NUCLEAR REACTIONS 197Au(36Ar, X), E=110 MeV/nucleon; analyzed charge distributions data; deduced multi-fragmentation phase coexistence related features.

doi: 10.1103/PhysRevLett.76.372
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1996MO18      Phys.Rev.Lett. 77, 2634 (1996)

L.G.Moretto, Th.Rubehn, L.Phair, N.Colonna, G.J.Wozniak, D.R.Bowman, G.F.Peaslee, N.Carlin, R.T.de Souza, C.K.Gelbke, W.G.Gong, Y.D.Kim, M.A.Lisa, W.G.Lynch, C.Williams

Charge Correlations and Dynamical Instabilities in the Multifragment Emission Process

NUCLEAR REACTIONS Cu(Xe, X), E at 50 MeV/nucleon; measured multi-fragmentation associated higher order charge correlations; deduced no evidence for preferred breakup into equal-sized fragments.

doi: 10.1103/PhysRevLett.77.2634
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1996PH03      Phys.Rev.Lett. 77, 822 (1996)

L.Phair, L.G.Moretto, G.J.Wozniak, R.T.de Souza, D.R.Bowman, N.Carlin, C.K.Gelbke, W.G.Gong, Y.D.Kim, M.A.Lisa, W.G.Lynch, G.F.Peaslee, M.B.Tsang, F.Zhu

Reducibility and Thermal and Mass Scaling in Angular Correlations from Multifragmentation Reactions

NUCLEAR REACTIONS 197Au(36Ar, X), E=50 MeV/nucleon; analyzed light charged particle azimuthal correlations data; deduced reducibility, thermal, mass scaling related features.

doi: 10.1103/PhysRevLett.77.822
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1996SC27      Nucl.Phys. A607, 457 (1996)

A.Schuttauf, W.D.Kunze, A.Worner, M.Begemann-Blaich, Th.Blaich, D.R.Bowman, R.J.Charity, A.Cosmo, A.Ferrero, C.K.Gelbke, C.Gross, W.C.Hsi, J.Hubele, G.Imme, I.Iori, J.Kempter, P.Kreutz, G.J.Kunde, V.Lindenstruth, M.A.Lisa, W.G.Lynch, U.Lynen, M.Mang, T.Mohlenkamp, A.Moroni, W.F.J.Muller, M.Neumann, B.Ocker, C.A.Ogilvie, G.F.Peaslee, J.Pochodzalla, G.Raciti, F.Rosenberger, Th.Rubehn, H.Sann, C.Schwarz, W.Seidel, V.Serfling, L.G.Sobotka, J.Stroth, L.Stuttge, S.Tomasevic, W.Trautmann, A.Trzcinski, M.B.Tsang, A.Tucholski, G.Verde, C.W.Williams, E.Zude, B.Zwieglinski

Universality of Spectator Fragmentation at Relativistic Bombarding Energies

NUCLEAR REACTIONS 9Be, C, 27Al, Cu, In, 197Au, U(129Xe, X), (197Au, X), (238U, X), E=400, 500, 800, 1000 MeV/nucleon; measured fragment production σ, charge, charge asymmetries, correlations. Intranuclear cascade, statistical multifragmentation models analysis.

doi: 10.1016/S0375-9474(96)00239-4
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1996SO01      Phys.Rev. C53, 243 (1996)

A.A.Sonzogni, A.Elmaani, C.Hyde-Wright, W.Jiang, D.Prindle, R.Vandenbosch, J.Dinius, G.Cron, D.Bowman, C.K.Gelbke, W.Hsi, W.G.Lynch, C.Montoya, G.Peaslee, C.Schwarz, M.B.Tsang, C.Williams, R.DeSouza, D.Fox, T.Moore

Evaporation Residue, Fission Cross Sections, and Linear Momentum Transfer for 14N Induced Reactions from 35A to 155A MeV

NUCLEAR REACTIONS 154Sm, 197Au(14N, X), (14N, F), E=35-155 MeV/nucleon; 159Tb(14N, X), (14N, F), E=35-100 MeV/nucleon; measured σ(evaporation residue θ), fission fragment σ(θ); deduced fusion σ(E). 181Ta(16O, F), E=25 MeV/nucleon; 181Ta(14N, F), E=35-100 MeV/nucleon; measured fission fragment folding angle distributions; deduced preequilibrium particle emission role.

doi: 10.1103/PhysRevC.53.243
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1996TS02      Phys.Rev. C53, 1959 (1996)

M.B.Tsang, P.Danielewicz, W.C.Hsi, M.Huang, W.G.Lynch, D.R.Bowman, C.K.Gelbke, M.A.Lisa, G.F.Peaslee, R.J.Charity, L.G.Sobotka, M.L.Begemann-Blaich, F.Cosmo, A.Ferrero, J.Hubele, G.Imme, I.Iori, J.Kempter, P.Kreutz, G.J.Kunde, W.D.Kunze, V.Lindenstruth, U.Lynen, M.Mang, A.Moroni, W.F.J.Muller, M.Neumann, B.Ocker, C.A.Ogilvie, J.Pochodzalla, G.Raciti, F.Rosenberger, T.Rubehn, H.Sann, R.Scardaoni, A.Schuttauf, C.Schwarz, W.Seidel, V.Serfling, W.Trautmann, A.Tucholski, A.Worner, B.Zwieglinski, and the ALADIN Collaboration

Squeeze-Out of Nuclear Matter in Au + Au Collisions

NUCLEAR REACTIONS 197Au(197Au, X), E=100, 250, 400 MeV/nucleon; measured σ(θ, φ), squeeze-out ratio vs reduced impact parameter; deduced out-of-plane to in-plane enhancement. BUU transport model.

doi: 10.1103/PhysRevC.53.1959
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1995BO21      Phys.Rev. C52, 818 (1995)

D.R.Bowman, N.Colonna, W.A.Friedman, L.Celano, M.D'Agostino, J.D.Dinius, A.Ferrero, C.K.Gelbke, T.Glasmacher, D.O.Handzy, D.Horn, W.C.Hsi, M.Huang, I.Iori, M.A.Lisa, W.G.Lynch, G.V.Margagliotti, P.M.Milazzo, C.P.Montoya, A.Moroni, G.F.Peaslee, L.Phair, F.Petruzzelli, R.Scardaoni, C.Schwarz, M.B.Tsang, C.Williams

Space-Time Characteristics of Fragment Emission in the E/A = 30 MeV 129Xe + (nat)Cu Reaction

NUCLEAR REACTIONS Cu(129Xe, X), E=30 MeV/nucleon; measured intermediate mass fragment multiplicities, reduced velocity correlation functions, emission velocities; deduced fragment emission space-time characteristics. Three-body trajectory calculations, dynamical BNV code based statistical models analyses.

doi: 10.1103/PhysRevC.52.818
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1995CH58      Phys.Rev. C52, 3126 (1995)

R.J.Charity, L.G.Sobotka, N.J.Robertson, D.G.Sarantites, J.Dinius, C.K.Gelbke, T.Glasmacher, D.O.Handzy, W.C.Hsi, M.J.Huang, W.G.Lynch, C.P.Montoya, G.F.Peaslee, C.Schwarz, M.B.Tsang

Prompt and Sequential Decay Processes in the Fragmentation of 40 MeV/Nucleon 20Ne Projectiles

NUCLEAR REACTIONS 120Sn, 197Au(20Ne, X), E=40 MeV/nucleon; measured projectile breakup, p, d, t, 3,4,6He, 6,7Li velocity distribution centroids, correlation functions; deduced breakup time scale.

doi: 10.1103/PhysRevC.52.3126
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1995CO21      Phys.Rev.Lett. 75, 1475 (1995)

E.Cornell, T.M.Hamilton, D.Fox, Y.Lou, R.T.de Souza, M.J.Huang, W.C.Hsi, C.Schwarz, C.Williams, D.R.Bowman, J.Dinius, C.K.Gelbke, T.Glasmacher, D.O.Handzy, M.A.Lisa, W.G.Lynch, G.F.Peaslee, L.Phair, M.B.Tsang, G.Van Buren, R.J.Charity, L.G.Sobotka, W.A.Friedman

Assessing the Evolutionary Nature of Multifragment Decay

NUCLEAR REACTIONS 197Au(84Kr, X), E=35-70 MeV/nucleon; analyzed (fragment)(fragment) velocity correlation, velocity relationship; deduced source characteristics evolution as fragments are emitted. Statistical model.

doi: 10.1103/PhysRevLett.75.1475
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1995DA23      Phys.Rev.Lett. 75, 4373 (1995)

M.D'Agostino, G.J.Kunde, P.M.Milazzo, J.D.Dinius, M.Bruno, N.Colonna, M.L.Fiandri, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, W.C.Hsi, M.Huang, M.A.Lisa, W.G.Lynch, P.F.Mastinu, C.P.Montoya, A.Moroni, G.F.Peaslee, L.Phair, R.Rui, C.Schwarz, M.B.Tsang, G.Vannini, C.Williams

Multifragmentation in E/A = 35 MeV Collisions: Evidence for a Coulomb driven breakup ( Question )

NUCLEAR REACTIONS 197Au(197Au, X), E=35 MeV/nucleon; measured fragment velocity distributions, efficiency corrected relative elemental probability distribution; deduced mean fragment multiplicities, emission mechanism.

doi: 10.1103/PhysRevLett.75.4373
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1995DE54      Phys.Rev. C52, 3488 (1995)

P.A.DeYoung, N.N.Ajitanand, J.M.Alexander, V.Datar, C.J.Gelderloos, G.Gilfoyle, M.S.Gordon, R.L.McGrath, G.F.Peaslee, J.Sarafa

Correlation Measurements of Light Charged Particles Emitted from 32S + 27Al Reactions at Energies of 105 MeV and 215 MeV

NUCLEAR REACTIONS 32S(27Al, X), E=105, 215 MeV; measured small angle correlation functions for pp-, pd-, pα-, dα-, αα-pairs; deduced unstable fragment yields. Compared with statistical model predictions.

doi: 10.1103/PhysRevC.52.3488
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1995GL03      Phys.Rev. C51, 3489 (1995)

T.Glasmacher, L.Phair, D.R.Bowman, C.K.Gelbke, W.G.Gong, Y.D.Kim, M.A.Lisa, W.G.Lynch, G.F.Peaslee, R.T.de Souza, M.B.Tsang, F.Zhu

Space-Time Ambiguity of Two- and Three-Fragment Reduced-Velocity Correlation Functions

NUCLEAR REACTIONS 197Au(36Ar, X), E=50 MeV/nucleon; measured intermediate mass fragment reduced velocity correlation functions; deduced source radius, source lifetime.

doi: 10.1103/PhysRevC.51.3489
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1995HA32      Phys.Rev.Lett. 75, 2916 (1995)

D.O.Handzy, W.Bauer, F.C.Daffin, S.J.Gaff, C.K.Gelbke, T.Glasmacher, E.Gualtieri, S.Hannuschke, M.J.Huang, G.J.Kunde, R.Lacey, T.Li, M.A.Lisa, W.J.Llope, W.G.Lynch, L.Martin, C.P.Montoya, R.Pak, G.F.Peaslee, S.Pratt, C.Schwarz, N.Stone, M.B.Tsang, A.M.Vander Molen, G.D.Westfall, J.Yee, S.J.Yennello

Understanding Proton Emission in Central Heavy-Ion Collisions

NUCLEAR REACTIONS 45Sc(36Ar, X), E=80-160 MeV/nucleon; measured σ(θ, Ep), pp-correlation function, central collisions; deduced proton emission from particle-unstable states possibility. BUU transport model.

doi: 10.1103/PhysRevLett.75.2916
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1995KU10      Phys.Rev.Lett. 74, 38 (1995)

G.J.Kunde, W.C.Hsi, W.D.Kunze, A.Schuttauf, A.Worner, M.Begemann-Blaich, Th.Blaich, D.R.Bowman, R.J.Charity, A.Cosmo, A.Ferrero, C.K.Gelbke, J.Hubele, G.Imme, I.Iori, P.Kreutz, V.Lindenstruth, M.A.Lisa, W.G.Lynch, U.Lynen, M.Mang, T.Mohlenkamp, A.Moroni, W.F.J.Muller, M.Neumann, B.Ocker, C.A.Ogilvie, G.F.Peaslee, J.Pochodzalla, G.Raciti, T.Rubehn, H.Sann, W.Seidel, V.Serfling, L.G.Sobotka, J.Stroth, L.Stuttge, S.Tomasevic, W.Trautmann, M.B.Tsang, A.Tucholski, G.Verde, C.W.Williams, E.Zude, B.Zwieglinski

Fragment Flow and the Multifragmentation Phase Space

NUCLEAR REACTIONS 197Au(197Au, X), E=100, 1000 MeV/nucleon; measured intermediate mass fragment multiplicity, Z=3-30; deduced central to peripheral collisions shift evidence, other energy dependent features.

doi: 10.1103/PhysRevLett.74.38
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1995MO07      Nucl.Phys. A583, 531c (1995)

A.Moroni, D.R.Bowman, M.Bruno, P.Buttazzo, L.Celano, N.Colonna, M.D'Agostino, J.D.Dinius, A.Ferrero, M.L.Fiandri, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, D.Horn, W.-C.Hsi, M.Huang, I.Iori, M.Lisa, W.G.Lynch, G.V.Margagliotti, P.F.Mastinu, P.M.Milazzo, C.Montoya, G.F.Peaslee, L.Phair, F.Petruzzelli, R.Rui, R.Scardaoni, C.Schwarz, B.Tsang, G.Vannini, C.Williams

Multifragment Emission Times in Xe Induced Reactions

NUCLEAR REACTIONS Cu(129Xe, X), E=30, 45 MeV/nucleon; measured intermediate mass fragment multiplicities. Statistical decay model analysis.

doi: 10.1016/0375-9474(94)00715-Y
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1995MO09      Phys.Rev.Lett. 74, 1530 (1995)

L.G.Moretto, L.Phair, K.Tso, K.Jing, G.J.Wozniak, R.T.de Souza, D.R.Bowman, N.Carlin, C.K.Gelbke, W.G.Gong, Y.D.Kim, M.A.Lisa, W.G.Lynch, G.F.Peaslee, M.B.Tsang, F.Zhu

Are Multifragment Emission Probabilities Reducible to an Elementary Binary Emission Probability

NUCLEAR REACTIONS 197Au(36Ar, X), E=80, 110 MeV/nucleon; measured intermediate mass fragment distribution multiplicity; deduced emission probability characteristics, consequences.

doi: 10.1103/PhysRevLett.74.1530
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1995PA33      Nucl.Phys. A594, 1 (1995)

W.E.Parker, M.Kaplan, D.J.Moses, J.M.Alexander, R.A.Lacey, D.M.de Castro Rizzo, J.Boger, A.Narayanan, G.F.Peaslee, D.G.Popescu

Coincidence Correlations between Light Charged Particles in the Matched Reactions 905 and 1030 MeV 121Sb + 27Al and 550 and 750 MeV 86Kr + 63Cu

NUCLEAR REACTIONS 27Al(121Sb, X), E=905, 1030 MeV; 63Cu(86Kr, X), E=550, 750 MeV; measured energy spectra, angular correlations of α/p in coincidence with α/p; deduced light particle production σ, mean emission chain lengths associated with evaporation residues. Characterized emitters. Comparisons made for matched reactions.

doi: 10.1016/0375-9474(95)00339-3
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1995PH03      Phys.Rev.Lett. 75, 213 (1995)

L.Phair, K.Tso, R.Ghetti, G.J.Wozniak, L.G.Moretto, R.T.de Souza, D.R.Bowman, N.Carlin, C.K.Gelbke, W.G.Gong, Y.D.Kim, M.A.Lisa, W.G.Lynch, G.F.Peaslee, M.B.Tsang, F.Zhu

Reducibility and Thermal Scaling of Charge Distributions in Multifragmentation

NUCLEAR REACTIONS 197Au(36Ar, X), E=110 MeV/nucleon; calculated multi-fragmentation charge distribution; deduced reducibility, thermal scaling.

doi: 10.1103/PhysRevLett.75.213
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1995PO06      Nucl.Phys. A583, 553c (1995)

J.Pochodzalla, S.Aiello, M.Begemann-Blaich, Th.Blaich, D.R.Bowman, R.J.Charity, A.Cosmo, A.Ferrero, C.K.Gelbke, W.C.Hsi, J.Hubele, G.Imme, I.Iori, J.Kempter, P.Kreutz, G.J.Kunde, W.D.Kunze, V.Lindenstruth, M.A.Lisa, W.G.Lynch, U.Lynen, M.Mang, L.G.Moretto, A.Moroni, W.F.J.Muller, M.Neumann, B.Ocker, C.A.Ogilvie, V.Pappalardo, G.F.Peaslee, G.Raciti, F.Rosenberger, T.Rubehn, H.Sann, R.Scardaoni, A.Schuttauf, W.Seidel, V.Serfling, L.G.Sobotka, J.Stroth, L.Stuttge, W.Trautmann, M.B.Tsang, A.Tucholski, C.W.Williams, A.Worner, E.Zude, B.Zwieglinski

Multifragmentation and Flow: Peripheral vs. central collisions

NUCLEAR REACTIONS 197Au(197Au, X), E=400-1000 MeV/nucleon; measured intermediate mass fragment multiplicity; deduced spectator decay features.

doi: 10.1016/0375-9474(94)00719-4
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1995TS03      Phys.Lett. 361B, 25 (1995)

K.Tso, L.Phair, N.Colonna, W.Skulski, G.J.Wozniak, L.G.Moretto, D.R.Bowman, M.Chartier, C.K.Gelbke, W.G.Gong, W.C.Hsi, Y.D.Kim, M.A.Lisa, W.G.Lynch, G.F.Peaslee, C.Schwarz, R.T.de Souza, M.B.Tsang, F.Zhu

Evidence for the Reducibility of Multifragment Emission to an Elementary Binary Emission in Xe-Induced Reactions

NUCLEAR REACTIONS Cu, 89Y, 165Ho, 197Au(129Xe, X), E=40-60 MeV/nucleon; measured intermediate mass fragment emission probability vs transversal energy.

doi: 10.1016/0370-2693(95)01137-F
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1994CH10      Phys.Lett. 323B, 113 (1994)

R.J.Charity, L.G.Sobotka, G.Van Buren, F.A.Tibbals, J.Barreto, D.R.Bowman, M.Chartier, J.Dinius, D.Fox, C.K.Gelbke, D.O.Handzy, W.C.Hsi, P.F.Hua, A.S.Kirov, M.A.Lisa, W.G.Lynch, G.F.Peaslee, L.Phair, D.G.Sarantites, C.Schwarz, R.T.de Souza, M.B.Tsang, C.Williams

Time Scale for Proton Emission from Highly Excited Projectiles

NUCLEAR REACTIONS 197Au(24Mg, X), E=60 MeV/nucleon; measured projectile breakup light charged particle velocity distribution centroids; deduced proton emission time scale.

doi: 10.1016/0370-2693(94)90278-X
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1994FO11      Phys.Rev. C50, 2424 (1994)

D.Fox, R.T.de Souza, T.Glasmacher, L.Phair, D.R.Bowman, N.Carlin, C.K.Gelbke, W.G.Gong, Y.D.Kim, M.A.Lisa, W.G.Lynch, G.F.Peaslee, M.B.Tsang, F.Zhu

Time Scale for Multifragmentation in Intermediate Energy Heavy-Ion Reactions

NUCLEAR REACTIONS 197Au(36Ar, X), E=35-110 MeV/nucleon; measured (fragment)(fragment) correlation vs Z1, Z2, σ(fragment E, θ), other aspects; deduced multi-fragmentation time scale features. Microcanonical model.

doi: 10.1103/PhysRevC.50.2424
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1994GL04      Phys.Rev. C50, 952 (1994)

T.Glasmacher, L.Phair, D.R.Bowman, C.K.Gelbke, W.G.Gong, Y.D.Kim, M.A.Lisa, W.G.Lynch, G.F.Peaslee, R.T.de Souza, M.B.Tsang, F.Zhu

Two-Fragment Correlation Functions with Directional Cuts for Central 36Ar + 197Au Collisions at E/A = 50 MeV

NUCLEAR REACTIONS 197Au(36Ar, X), E=50 MeV/nucleon; measured (fragment)(fragment)-velocity correlation; deduced source lifetime, size. Many-body trajectory calculations.

doi: 10.1103/PhysRevC.50.952
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1994HA29      Phys.Rev. C50, 858 (1994)

D.O.Handzy, M.A.Lisa, C.K.Gelbke, W.Bauer, F.C.Daffin, P.Decowski, W.G.Gong, E.Gualtieri, S.Hannuschke, R.Lacey, T.Li, W.G.Lynch, C.M.Mader, G.F.Peaslee, T.Reposeur, S.Pratt, A.M.Vander Molen, G.D.Westfall, J.Yee, S.J.Yennello

Two-Proton Correlation Functions for 36Ar + 45Sc at E/A = 80 MeV

NUCLEAR REACTIONS 45Sc(36Ar, X), E=80 MeV/nucleon; measured 2p-correlation functions. Boltzmann-Uehling-Uhlenbeck transport model.

doi: 10.1103/PhysRevC.50.858
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1994HS03      Phys.Rev.Lett. 73, 3367 (1994)

W.C.Hsi, G.J.Kunde, J.Pochodzalla, W.G.Lynch, M.B.Tsang, M.L.Begemann-Blaich, D.R.Bowman, R.J.Charity, F.Cosmo, A.Ferrero, C.K.Gelbke, T.Glasmacher, T.Hofmann, G.Imme, I.Iori, J.Hubele, J.Kempter, P.Kreutz, W.D.Kunze, V.Lindenstruth, M.A.Lisa, U.Lynen, M.Mang, A.Moroni, W.F.J.Muller, M.Neumann, B.Ocker, C.A.Ogilvie, G.F.Peaslee, G.Raciti, F.Rosenberger, H.Sann, R.Scardaoni, A.Schuttauf, C.Schwarz, W.Seidel, V.Serfling, L.G.Sobotka, L.Stuttge, S.Tomasevic, W.Trautmann, A.Tucholski, C.Williams, A.Worner, B.Zwieglinski

Collective Expansion in Central Au + Au Collisions

NUCLEAR REACTIONS 197Au(197Au, X), E=100 MeV/nucleon; measured intermediate mass fragments energy spectra; deduced collective expansion per nucleon for each charge. Central collisions.

doi: 10.1103/PhysRevLett.73.3367
Citations: PlumX Metrics


1994JU01      Phys.Rev. C49, R5 (1994)

M.L.Justice, Y.Blumenfeld, N.Colonna, D.N.Delis, G.Guarino, K.Hanold, J.C.Meng, G.F.Peaslee, G.J.Wozniak, L.G.Moretto

Electromagnetic Dissociation of 238U at 120 MeV/nucleon

NUCLEAR REACTIONS U(9Be, F), (27Al, F), (Cu, F), (Ag, F), (238U, F), E=120 MeV/nucleon; measured fission σ, fragment velocities; deduced electromagnetic component estimate of fission σ.

doi: 10.1103/PhysRevC.49.R5
Citations: PlumX Metrics


1994MO34      Phys.Rev.Lett. 73, 3070 (1994)

C.P.Montoya, W.G.Lynch, D.R.Bowman, G.F.Peaslee, N.Carlin, R.T.de Souza, C.K.Gelbke, W.G.Gong, Y.D.Kim, M.A.Lisa, L.Phair, M.B.Tsang, J.B.Webster, C.Williams, N.Colonna, K.Hanold, M.A.McMahan, G.J.Wozniak, L.G.Moretto

Fragmentation of Necklike Structures

NUCLEAR REACTIONS Cu(129Xe, X), E=49.8 MeV/nucleon; measured intermediate mass fragment yield vs velocity; deduced necklike structure role in emission.

doi: 10.1103/PhysRevLett.73.3070
Citations: PlumX Metrics


1994PE06      Phys.Rev. C49, R2271 (1994)

G.F.Peaslee, M.B.Tsang, C.Schwarz, M.J.Huang, W.S.Huang, W.C.Hsi, C.Williams, W.Bauer, D.R.Bowman, M.Chartier, J.Dinius, C.K.Gelbke, T.Glasmacher, D.O.Handzy, M.A.Lisa, W.G.Lynch, C.M.Mader, L.Phair, M.-C.Lemaire, S.R.Souza, G.Van Buren, R.J.Charity, L.G.Sobotka, G.J.Kunde, U.Lynen, J.Pochodzalla, H.Sann, W.Trautmann, D.Fox, R.T.de Souza, G.Peilert, W.A.Friedman, N.Carlin

Energy Dependence of Multifragmentation in 84Kr + 197Au Collisions

NUCLEAR REACTIONS 197Au(84Kr, X), E=35, 55, 70, 100, 200, 400 MeV/nucleon; measured intermediate mass fragment, total charged particle multiplicities; deduced multi-fragmentation energy dependence. QMD model.

doi: 10.1103/PhysRevC.49.R2271
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1993BA10      Nucl.Phys. A553, 749c (1993)

W.Bauer, D.R.Bowman, N.Carlin, N.Colonna, R.T.de Souza, C.K.Gelbke, W.G.Gong, K.Hanold, Y.D.Kim, M.A.Lisa, W.G.Lynch, M.A.McMahan, L.G.Moretto, G.F.Peaslee, L.Phair, M.B.Tsang, C.Williams, G.J.Wozniak, F.Zhu

Multifragment Emission in 36Ar + 197Au and 129Xe + 197Au Collisions

NUCLEAR REACTIONS 197Au(129Xe, X), E=50 MeV/nucleon; 197Au(36Ar, X), E=50-110 MeV/nucleon; measured intermediate mass fragments number, charged particle multiplicity. Model analysis.

doi: 10.1016/0375-9474(93)90692-Q
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1993BO16      Phys.Rev.Lett. 70, 3534 (1993)

D.R.Bowman, G.F.Peaslee, N.Carlin, R.T.de Souza, C.K.Gelbke, W.G.Gong, Y.D.Kim, M.A.Lisa, W.G.Lynch, L.Phair, M.B.Tsang, C.Williams, N.Colonna, K.Hanold, M.A.McMahan, G.J.Wozniak, L.G.Moretto

Sources and Emission Time Scales in E/A = 50 MeV 129Xe + (nat)Cu Reactions

NUCLEAR REACTIONS Cu(129Xe, X), E=50 MeV/nucleon; measured (fragment)(fragment)(θ), velocity distributions; deduced source features, emission times.

doi: 10.1103/PhysRevLett.70.3534
Citations: PlumX Metrics


1993DE06      Phys.Lett. 300B, 29 (1993)

R.T.de Souza, D.Fox, W.A.Friedman, L.Phair, D.R.Bowman, C.K.Gelbke, W.G.Gong, Y.D.Kim, M.A.Lisa, W.G.Lynch, G.F.Peaslee, M.B.Tsang, F.Zhu

Expansion Effects in Intermediate Energy Heavy-Ion Reactions

NUCLEAR REACTIONS 197Au(36Ar, X), E=50-110 MeV/nucleon; measured charged particle multiplicity; deduced source expansion role during emission.

doi: 10.1016/0370-2693(93)90743-2
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1993FO01      Phys.Rev. C47, R421 (1993); Erratum Phys.Rev. C48, 3135 (1993)

D.Fox, R.T.de Souza, L.Phair, D.R.Bowman, N.Carlin, C.K.Gelbke, W.G.Gong, Y.D.Kim, M.A.Lisa, W.G.Lynch, G.F.Peaslee, M.B.Tsang, F.Zhu

Extraction of the Multifragmentation Time Scale in Intermediate Energy Heavy-Ion Reactions

NUCLEAR REACTIONS 197Au(36Ar, X), E=50-110 MeV/nucleon; measured charged particle multiplicity, intermediate mass fragment correlation; deduced multi-fragmentation time scale.

doi: 10.1103/PhysRevC.47.R421
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1993HA16      Phys.Rev. C48, 723 (1993)

K.Hanold, L.G.Moretto, G.F.Peaslee, G.J.Wozniak, D.R.Bowman, M.F.Mohar, D.J.Morrissey

Transition from Complete to Incomplete Fusion in Asymmetric Heavy Ion Reactions

NUCLEAR REACTIONS C, 27Al, Ti, Cu(129Xe, X), E=26, 31 MeV/nucleon; measured σ(fragment θ), (fragment)(fragment)-coin; deduced σ, source velocity. C, 27Al, Ti, Cu(139La, X), E=18 MeV/nucleon; calculated (fragment)(fragment)-coin, yield. Incomplete fusion model.

doi: 10.1103/PhysRevC.48.723
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1993LI16      Phys.Rev.Lett. 70, 3709 (1993)

M.A.Lisa, C.K.Gelbke, W.Bauer, P.Decowski, W.G.Gong, E.Gualtieri, S.Hannuschke, R.Lacey, T.Li, W.G.Lynch, C.M.Mader, G.F.Peaslee, T.Reposeur, A.M.Vander Molen, G.D.Westfall, J.Yee, S.J.Yennello

Impact-Parameter-Selected Two-Proton Intensity Interferometry for 36Ar + 45Sc at E/A = 80 MeV

NUCLEAR REACTIONS 45Sc(36Ar, X), E=80 MeV/nucleon; measured (pp)(θ) vs momentum. Boltzmann-Uehling-Uhlenbeck theory.

doi: 10.1103/PhysRevLett.70.3709
Citations: PlumX Metrics


1993LI37      Phys.Rev.Lett. 71, 2863 (1993)

M.A.Lisa, C.K.Gelbke, P.Decowski, W.G.Gong, E.Gualtieri, S.Hannuschke, R.Lacey, T.Li, W.G.Lynch, G.F.Peaslee, S.Pratt, T.Reposeur, A.M.Vander Molen, G.D.Westfall, J.Yee, S.J.Yennello

Observation of Lifetime Effects in Two-Proton Correlations for Well-Characterized Sources

NUCLEAR REACTIONS 45Sc(36Ar, X), E=80 MeV/nucleon; measured pp-longitudinal, transverse correlation functions; deduced emitting source characteristic T1/2, other features.

doi: 10.1103/PhysRevLett.71.2863
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1993PH01      Nucl.Phys. A564, 453 (1993)

L.Phair, D.R.Bowman, N.Carlin, C.K.Gelbke, W.G.Gong, Y.D.Kim, M.A.Lisa, W.G.Lynch, G.F.Peaslee, R.T.de Souza, M.B.Tsang, C.Williams, F.Zhu, N.Colonna, K.Hanold, M.A.McMahan, G.J.Wozniak

Azimuthal Correlations as a Test for Centrality in Heavy-Ion Collisions

NUCLEAR REACTIONS 197Au(36Ar, X), E=35-110 MeV/nucleon; 197Au(129Xe, X), E=50 MeV/nucleon; measured (particle)(particle)(φ); deduced central collisions selectivity features.

doi: 10.1016/0375-9474(93)90515-Y
Citations: PlumX Metrics


1993RO02      Nucl.Phys. A551, 508 (1993)

P.Roussel-Chomaz, N.Colonna, Y.Blumenfeld, B.Libby, G.F.Peaslee, D.N.Delis, K.Hanold, M.A.McMahan, J.C.Meng, Q.C.Sui, G.J.Wozniak, L.G.Moretto, H.Madani, A.A.Marchetti, A.C.Mignerey, G.Guarino, N.Santoruvo, I.Iori, S.Bradley

Complex Fragment Production and Multifragmentation in 139La-Induced Reactions at 35, 40, 45 and 55 MeV/u

NUCLEAR REACTIONS 12C, 27Al, 40Ca, Cu, 139La(139La, X), E=35, 40, 45, 55 MeV/nucleon; measured σ(fragment E, θ), (fragment)(fragment)-coin; deduced source velocities, charge distributions.

doi: 10.1016/0375-9474(93)90460-F
Citations: PlumX Metrics


1993TS02      Phys.Rev.Lett. 71, 1502 (1993)

M.B.Tsang, W.C.Hsi, W.G.Lynch, D.R.Bowman, C.K.Gelbke, M.A.Lisa, G.F.Peaslee, G.J.Kunde, M.L.Begemann-Blaich, T.Hofmann, J.Hubele, J.Kempter, P.Kreutz, W.D.Kunze, V.Lindenstruth, U.Lynen, M.Mang, W.F.J.Muller, M.Neumann, B.Ocker, C.A.Ogilvie, J.Pochodzalla, F.Rosenberger, H.Sann, A.Schuttauf, V.Serfling, J.Stroth, W.Trautmann, A.Tucholski, A.Worner, E.Zude, B.Zwieglinski, S.Aiello, G.Imme, V.Pappalardo, G.Raciti, R.J.Charity, L.G.Sobotka, I.Iori, A.Moroni, R.Scardoni, A.Ferrero, W.Seidel, Th.Blaich, L.Stuttge, A.Cosmo, W.A.Friedman, G.Peilert

Onset of Nuclear Vaporization in 197Au + 197Au Collisions

NUCLEAR REACTIONS 197Au(197Au, X), E ≤ 400 MeV/nucleon; measured average intermediate fragment, charged particle multiplicities correlation; deduced vaporization onset features.

doi: 10.1103/PhysRevLett.71.1502
Citations: PlumX Metrics


1992BO29      Phys.Rev. C46, 1834 (1992)

D.R.Bowman, C.M.Mader, G.F.Peaslee, W.Bauer, N.Carlin, R.T.de Souza, C.K.Gelbke, W.G.Gong, Y.D.Kim, M.A.Lisa, W.G.Lynch, L.Phair, M.B.Tsang, C.Williams, N.Colonna, K.Hanold, M.A.McMahan, G.J.Wozniak, L.G.Moretto, W.A.Friedman

Intermediate Mass Fragment Emission as a Probe of Nuclear Dynamics

NUCLEAR REACTIONS 12C, 27Al, 51V, Cu, 89Y, 197Au(129Xe, X), E=50 MeV/nucleon; measured fragment muliplicity, charge distribution; deduced correlation with charged particle multiplicity, target independence. Hybrid model, dynamical emission aspects.

doi: 10.1103/PhysRevC.46.1834
Citations: PlumX Metrics


1992KE01      Nucl.Instrum.Methods Phys.Res. A311, 258 (1992)

W.L.Kehoe, A.C.Mignerey, A.Moroni, I.Iori, G.F.Peaslee, N.Colonna, K.Hanold, D.R.Bowman, L.G.Moretto, M.A.McMahan, J.T.Walton, G.J.Wozniak

A Modular Array to Detect Complex Fragments Produced in Intermediate-Energy Reverse-Kinematics Reactions

NUCLEAR REACTIONS 40Ca(139La, X), E=40 MeV/nucleon; Cu(129Xe, X), E=50 MeV/nucleon; measured fragment production vs Z, total charge for 2-, 3-, 4-fold events. 12C, 27Al, 51V, Cu(139La, X), E=40 MeV/nucleon; measured total charge for 2-, 3-, 4-fold events. Segmented silicon-silicon-plastic array.

doi: 10.1016/0168-9002(92)90871-Z
Citations: PlumX Metrics


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