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NSR database version of April 11, 2024.

Search: Author = M.Mutterer

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2021DU19      Phys.Rev. C 104, 034621 (2021)

S.Dubey, A.Echler, P.Egelhof, P.Grabitz, W.Lauterfeld, M.Mutterer, S.Stolte, A.Blanc, U.Koster, O.Serot, G.Kessedjian, S.Kraft-Bermuth, P.Scholz, S.Bishop, J.M.Gomez-Guzman, F.Gonnenwein

Isotopic distributions of thermal-neutron-induced fission fragments of near-symmetric fission of 239, 241Pu determined using calorimetric low-temperature detectors

NUCLEAR REACTIONS 239,241Pu(n, F)89Se/89Br/90Br/91Br/89Kr/90Kr/91Kr/92Kr/93Kr/94Kr/95Kr/89Rb/90Rb/91Rb/92Rb/93Rb/94Rb/95Rb/96Rb/97Rb/90Sr/91Sr/92Sr/93Sr/94Sr/95Sr/96Sr/97Sr/98Sr/99Sr/100Sr/93Y/94Y/95Y/96Y/97Y/98Y/99Y/100Y/101Y/102Y/96Zr/97Zr/98Zr/99Zr/100Zr/101Zr/102Zr/103Zr/104Zr/105Zr/98Nb/99Nb/100Nb/101Nb/102Nb/103Nb/104Nb/105Nb/106Nb/101Mo/102Mo/103Mo/104Mo/105Mo/106Mo/107Mo/108Mo/109Mo/104Tc/105Tc/106Tc/107Tc/108Tc/109Tc/110Tc/111Tc/112Tc/106Ru/107Ru/108Ru/109Ru/110Ru/111Ru/112Ru/109Rh/110Rh/111Rh/112Rh/112Pd/113Rh/113Pd, E=thermal; measured particle energies, and isotopic distributions for the light fission fragments in A=89-112, Z=36-45 asymmetric to symmetric fission region using calorimetric low-temperature detectors (CLTDs) and the LOHENGRIN spectrometer of the ILL, Grenoble high flux reactor; deduced fractional independent yields, independent yields, charge polarization as a function of the secondary mass, local proton odd-even effect versus nuclear charge number Z, virtual shell effect near Z=44, in analogy to the effect of the Z=50 shell in the complementary heavy fragment group of 239,241Pu. Comparison with previous experimental data.

doi: 10.1103/PhysRevC.104.034621
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset23780.


2021LI49      Phys.Rev. C 104, 034315 (2021)

X.Liu, P.Egelhof, O.Kiselev, M.Mutterer

Nuclear matter density distributions of the neutron-rich 6, 8He isotopes from a sum-of-Gaussian analysis of elastic proton scattering data at intermediate energies

NUCLEAR REACTIONS 1H(6He, p), (8He, p), E≈700 MeV/nucleon; analyzed experimental differential cross sections from GSI using sum-of-Gaussians (SOG) method based on Glauber multiple-scattering theory; deduced scattering amplitude parameters. 6,8He; deduced rms point nuclear matter radii, radial density distributions, neutron halo in 8He; discussed core rearrangement by adding the valence neutrons to an α-like core to form 6He and 8He.

doi: 10.1103/PhysRevC.104.034315
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2020DU13      Phys.Rev. C 102, 044602 (2020)

S.Dubey, A.Echler, P.Egelhof, P.Grabitz, W.Lauterfeld, M.Mutterer, S.Stolte, A.Blanc, U.Koster, O.Serot, G.Kessedjian, S.Kraft-Bermuth, P.Scholz, F.Gonnenwein

Precise 92Rb and 96Y yields for thermal-neutron-induced fission of 235U and 239, 241Pu determined using calorimetric low-temperature detectors

NUCLEAR REACTIONS 235U, 239,241Pu(n, F), E=thermal neutrons from high-flux reactor at ILL-Grenoble; measured fission fragments using the LOHENGRIN mass spectrometer; deduced fractional independent yields per A=92 and A=96, independent yields per fission of A=92 and 96 isotopes of 92Rb, 92Sr, 92Kr, 96Rb, 96Sr, 96Y and 96Zr, and cumulative yields. Comparison with previous experimental results, and with data in evaluated libraries: JENDL-4.0, JEFF-3.3, and ENDF/B-VIII.0, and with GEF theoretical calculations. Relevance to reducing nuclear data uncertainties in the computation of reactor antineutrino spectra by the summation method. Discussed problem of 92Rb β- decay to 92Sr ground-state in the context of discrepancies between previous measurements for fission yields.

doi: 10.1103/PhysRevC.102.044602
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset23763.


2020LI38      Phys.Lett. B 809, 135776 (2020)

X.Liu, P.Egelhof, O.Kiselev, M.Mutterer

Variance in the radial distribution of nuclear matter between 56Ni and 58Ni inferred from a model-independent Sum-of-Gaussian analysis of elastic proton scattering data

NUCLEAR REACTIONS 1H(56Ni, p), (58Ni, p), E=400 MeV/nucleon; measured reaction products, Ep, Ip; deduced σ(t), nuclear matter density distributions, rms point matter radii.

doi: 10.1016/j.physletb.2020.135776
Citations: PlumX Metrics


2018CH44      Eur.Phys.J. A 54, 98 (2018)

A.Chietera, L.Stuttge, F.Gonnenwein, Yu.Kopatch, M.Mutterer, A.Gagarski, I.Guseva, E.Chernysheva, F.-J.Hambsch, F.Hanappe, Z.Mezentseva, S.Telezhnikov

Angular correlations in the prompt neutron emission of spontaneous fission of 252Cf

RADIOACTIVITY 252Cf(SF); measured En, In(θ), n-n correlations, fission fragments using angle-sensitive twin ionization chamber CODIS for fission fragments and the DEMOLN neutron assembly; deduced anisotropy coefficient; calculated, simulated anisotropy of neutron evaporation and emission of scission neutron within the method suggested by Bunakov and Guseva; deduced parameters for light and for heavy fragments.

doi: 10.1140/epja/i2018-12529-y
Citations: PlumX Metrics


2018TR01      Nucl.Instrum.Methods Phys.Res. B418, 1 (2018)

W.H.Trzaska, G.N.Knyazheva, J.Perkowski, J.Andrzejewski, S.V.Khlebnikov, E.M.Kozulin, T.Malkiewicz, M.Mutterer, E.O.Savelieva

New experimental stopping power data of 4He, 16O, 40Ar, 48Ca and 84Kr projectiles in different solid materials

NUCLEAR REACTIONS C, 27Al, Ni, Ag, Lu, 197Au, Pb, Th(α, X), (16O, X), (40Ar, X), (48Ca, X), (84Kr, X), E=0.1-11 MeV/nucleon; measured reaction products, time of flight; deduced stopping power.

doi: 10.1016/j.nimb.2017.12.025
Citations: PlumX Metrics


2018WO01      Acta Phys.Pol. B49, 387 (2018)

D.Wojcik, A.Trzcinska, E.Piasecki, M.Kisielinski, M.Kowalczyk, M.Wolinska-Cichocka, C.Bordeanu, B.Gnoffo, H.Jia, C.Lin, N.S.Martorana, M.Mutterer, E.V.Pagano, K.Piasecki, P.Russotto, L.Quatrocchi, W.H.Trzaska, G.Tiurin, R.Wolski, H.Zhang

Transfer Cross Sections at Near-barrier Energy for the 24Mg + 90, 92Zr Systems

NUCLEAR REACTIONS 90,92Zr(24Mg, x), E=76 MeV; measured using multidetector system ICARE with start signal bz the Microchannel Plate (MCP) and stop signal by one of Si detectors placed at polar angle 142, used also to measure the energy of reaction products, and beam energy monitored by Si detectors at 30; deduced E-ToF spectra of backscattered ions; measured stripping reactions involving up up to 4 nucleons and reaction channels up to 2 nucleons picked up (i.e. the product mass from A-6 to A+2, A is the target mass); deduced transfer σtr(θ) and lacking structure of distribution of barrier heights, the cross sections are considerably smaller than those for 20Ne projectile. Preliminary.

doi: 10.5506/aphyspolb.49.387
Citations: PlumX Metrics


2017ZA09      Phys.Rev. C 96, 034617 (2017)

J.C.Zamora, T.Aumann, S.Bagchi, S.Bonig, M.Csatlos, I.Dillmann, C.Dimopoulou, P.Egelhof, V.Eremin, T.Furuno, H.Geissel, R.Gernhauser, M.N.Harakeh, A.-L.Hartig, S.Ilieva, N.Kalantar-Nayestanaki, O.Kiselev, H.Kollmus, C.Kozhuharov, A.Krasznahorkay, Th.Kroll, M.Kuilman, S.Litvinov, Yu.A.Litvinov, M.Mahjour-Shafiei, M.Mutterer, D.Nagae, M.A.Najafi, C.Nociforo, F.Nolden, U.Popp, C.Rigollet, S.Roy, C.Scheidenberger, M.von Schmid, M.Steck, B.Streicher, L.Stuhl, M.Thurauf, T.Uesaka, H.Weick, J.S.Winfield, D.Winters, P.J.Woods, T.Yamaguchi, K.Yue, J.Zenihiro

Nuclear-matter radius studies from 58Ni (α, α) experiments at the GSI Experimental Storage Ring with the EXL facility

NUCLEAR REACTIONS 4He(58Ni, α), (58Ni, α'), E=100, 150 MeV/nucleon; measured scattered α-particles, differential σ(θ, E) using stored ion beams and a UHV compatible detection system with a double-sided silicon strip detector (DSSD) at the heavy-ion experimental storage ring (ESR) at GSI facility; deduced optical model potential parameters, probability density distribution, point-density distributions of 58Ni, nuclear-matter radius, and compared with Skyrme-Hartree-Fock calculation (SHF), half-density radius, diffuseness of a Fermi-shape, rms radius, total-matter distribution, point-matter distribution. Comparison with experimental data.

doi: 10.1103/PhysRevC.96.034617
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Data from this article have been entered in the XUNDL database. For more information, click here.


2016GA15      Phys.Rev. C 93, 054619 (2016)

A.Gagarski, F.Gonnenwein, I.Guseva, P.Jesinger, Yu.Kopatch, T.Kuzmina, E.Lelievre-Berna, M.Mutterer, V.Nesvizhevsky, G.Petrov, T.Soldner, G.Tiourine, W.H.Trzaska, T.Zavarukhina

Particular features of ternary fission induced by polarized neutrons in the major actinides 233, 235U and 239, 241Pu

NUCLEAR REACTIONS 233,235U, 239,241Pu(polarized n, F), E=cold longitudinally polarized neutron beam from High Flux Reactor at ILL-Grenoble; measured fission fragments and ternary particles, ternary particles (TP)-light fission fragments (LF)-coin, angular asymmetries, angular distributions of ternary particles, trajectories of fragments and ternary α particle, angular ROT shift, TRI asymmetry; analyzed ROT (collective rotation of the compound nucleus down to scission) and TRI (influence of the rotating nucleus on the emission probability of ternary particles) effects, correlation between neutron spin, the momenta light fission (LF) fragment, and ternary particles (TP).

doi: 10.1103/PhysRevC.93.054619
Citations: PlumX Metrics


2016TO19      Bull.Rus.Acad.Sci.Phys. 80, 871 (2016)

S.Yu.Torilov, N.A.Maltsev, V.Z.Goldberg, K.A.Gridnev, V.I.Zherebchevsky, T.Lonnroth, M.Mutterer, B.G.Novatsky, R.B.Panin, J.M.K.Slotte, Yu.G.Sobolev, W.H.Trzaska, G.P.Tyurin, S.V.Khlebnikov

Decay of quasimolecular states in 26Mg

NUCLEAR REACTIONS 14C(12C, 12C), (12C, 10Be), E*=41-44 MeV; calculated σ, σ(θ) using DWBA with phenomenological optical potentials; deduced parameters, resonance-like structure (already observed in the experiment) near E(cm)≈23.5 MeV, resonant-like structure in 16O+10Be channel at E(cm)≈19.7 MeV, dependence of E* vs angular momentum, prediction of 10+ state.

doi: 10.3103/S1062873816080384
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2338.


2016TR05      Phys.Rev. C 93, 054604 (2016)

A.Trzcinska, E.Piasecki, A.Amar, W.Czarnacki, N.Keeley, M.Kisielinski, S.Kliczewski, M.Kowalczyk, B.Lommel, M.Mutterer, R.Siudak, A.Stolarz, I.Strojek, G.Tiourin, W.H.Trzaska

Examination of the influence of transfer channels on the barrier height distribution: Scattering of 20Ne on 58Ni, 60Ni, and 61Ni at near-barrier energies

NUCLEAR REACTIONS 20Ne(58Ni, X), (60Ni, X), (61Ni, X), E=51 MeV; measured reaction products based on time-of-flight and ΔE-E methods, angular distributions, transfer probabilities and transfer cross sections for 1p, 1n, 2n, 2p and α pickup and stripping channels. Experiments carried out at Warsaw U200-P cyclotron facility. Comparison with coupled reaction channel calculations.

doi: 10.1103/PhysRevC.93.054604
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0815.


2016ZA08      Phys.Lett. B 763, 16 (2016)

J.C.Zamora, T.Aumann, S.Bagchi, S.Bonig, M.Csatlos, I.Dillmann, C.Dimopoulou, P.Egelhof, V.Eremin, T.Furuno, H.Geissel, R.Gernhauser, M.N.Harakeh, A.-L.Hartig, S.Ilieva, N.Kalantar-Nayestanaki, O.Kiselev, H.Kollmus, C.Kozhuharov, A.Krasznahorkay, Th.Kroll, M.Kuilman, S.Litvinov, Yu.A.Litvinov, M.Mahjour-Shafiei, M.Mutterer, D.Nagae, M.A.Najafi, C.Nociforo, F.Nolden, U.Popp, C.Rigollet, S.Roy, C.Scheidenberger, M.von Schmid, M.Steck, B.Streicher, L.Stuhl, M.Thurauf, T.Uesaka, H.Weick, J.S.Winfield, D.Winters, P.J.Woods, T.Yamaguchi, K.Yue, J.Zenihiro

First measurement of isoscalar giant resonances in a stored-beam experiment

NUCLEAR REACTIONS 4He(58Ni, α'), E=100 MeV/nucleon; measured reaction products, Eα, Iα. 58Ni; deduced σ(θ, E), monopole contribution of the energy-weighted sum rule (EWSR).

doi: 10.1016/j.physletb.2016.10.015
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2368. Data from this article have been entered in the XUNDL database. For more information, click here.


2015CH22      Acta Phys.Pol. B46, 569 (2015)

A.Chietera, L.Stuttge, F.Gonnenwein, Yu.Kopatch, M.Mutterer, I.Guseva, A.Gagarski, E.Chernysheva, O.Dorvaux, F.J.Hambsch, F.Hanappe, Z.Mezentsevah, S.Telezhnikovch

Neutron Emission Anisotropy in Fission

RADIOACTIVITY 252Cf(SF); calculated neutron yields, σ(θ). GEANT4, MENATE_R codes.

doi: 10.5506/APhysPolB.46.569
Citations: PlumX Metrics


2015DO10      Phys.Scr. T166, 014007 (2015)

D.T.Doherty, P.J.Woods, Y.A.Litvinov, M.A.Najafi, S.Bagchi, S.Bishop, M.Bo, C.Brandau, T.Davinson, I.Dillmann, A.Estrade, P.Egelhof, A.Evdokimov, A.Gumberidze, M.Heil, C.Lederer, S.A.Litvinov, G.Lotay, N.Kalantar-Nayestanaki, O.Kiselev, C.Kozhuharov, T.Kroll, M.Mahjour-Shafiei, M.Mutterer, F.Nolden, N.Petridis, U.Popp, R.Reifarth, C.Rigollet, S.Roy, M.Steck, T.Stohlker, B.Streicher, S.Trotsenko, M.v.Schmid, X.L.Yan, J.C.Zamora

Nuclear transfer reaction measurements at the ESR-for the investigation of the astrophysical 15O(α, γ)19Ne reaction

NUCLEAR REACTIONS 1H(20Ne, d), E=50 MeV/nucleon; measured reaction products; deduced energy levels, J, π. Comparison with available data.

doi: 10.1088/0031-8949/2015/T166/014007
Citations: PlumX Metrics


2014TR03      Acta Phys.Pol. B45, 383 (2014)

A.Trzcinska, E.Piasecki, W.Czarnacki, P.Decowski, N.Keeley, M.Kisielinski, S.Kliczewski, P.Koczon, A.Kordyasz, M.Kowalczyk, S.Khlebnikov, E.Koshchiy, T.Krogulski, B.Lommel, T.Loktev, M.Mutterer, K.Piasecki, I.Strojek, W.H.Trzaska, S.Smirnov, A.Stolarz, G.Tiourin

Barrier Height Distributions - the Influence of Weak Channels

doi: 10.5506/APhysPolB.45.383
Citations: PlumX Metrics


2012PI08      Phys.Rev. C 85, 054604 (2012); Pub.Note Phys.Rev. C 85, 059903 (2012)

E.Piasecki, W.Czarnacki, N.Keeley, M.Kisielinski, S.Kliczewski, A.Kordyasz, M.Kowalczyk, S.Khlebnikov, E.Koshchiy, T.Krogulski, T.Loktev, M.Mutterer, A.Piorkowska, K.Rusek, M.Sillanpaa, A.Staudt, I.Strojek, S.Smirnov, W.H.Trzaska, A.Trzcinska

Weak channels in backscattering of 20Ne on natNi, 118Sn, and 208Pb

NUCLEAR REACTIONS Ni(20Ne, X), E=51.7 MeV; 118Sn(20Ne, X), E=72.1 MeV; 208Pb(20Ne, X), E=102.0 MeV; measured particle spectra, time of flight, energy loss, transfer σ; deduced mass distribution of reaction products, inelastic Q-spectra. 90Zr(20Ne, X), E=62.8 MeV; 92Zr(20Ne, X), E=62.6 MeV; analyzed data. Comparison with coupled-channels (CC) calculations.

doi: 10.1103/PhysRevC.85.054604
Citations: PlumX Metrics


2011KI49      Nucl.Instrum.Methods Phys.Res. A 641, 72 (2011)

O.A.Kiselev, F.Aksouh, A.Bleile, O.V.Bochkarev, L.V.Chulkov, D.Cortina-Gil, A.V.Dobrovolsky, P.Egelhof, H.Geissel, M.Hellstroem, N.B.Isaev, B.G.Komkov, M.Matos, F.V.Moroz, G.Muenzenberg, M.Mutterer, V.A.Mylnikov, S.R.Neumaier, V.N.Pribora, D.M.Seliverstov, L.O.Sergueev, A.Shrivastava, K.Suemmerer, H.Weick, M.Winkler, V.I.Yatsoura

A new experimental approach to investigate intermediate energy proton elastic scattering and breakup reactions on exotic nuclei in inverse kinematics

NUCLEAR REACTIONS 1H(6He, 6He), 1H(8He, 8He), 6,8He(p, p), E=4.3-5.3 GeV; measured products, 6He, Eπ, Iπ; deduced σ(θ). Data were imported from EXFOR entry O1908.

doi: 10.1016/j.nima.2011.03.046
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1908.


2011TO07      JETP Lett. 94, 6 (2011)

S.Yu.Torilov, K.A.Gridnev, V.I.Zherebchevsky, M.Brenner, L.I.Vinogradov, V.Z.Goldberg, T.V.Korovitskaya, T.Lonnroth, N.A.Maltsev, M.Mutterer, B.G.Novatskii, M.Norrby, J.M.K.Slotte, Yu.G.Sobolev, W.H.Trzaska, G.P.Tyurin, S.V.Khlebnikov

Cluster states in the neutron excess nucleus 22Ne

RADIOACTIVITY 22Ne(α) [from 14C(12C, α), E=44 MeV]; measured decay products, Eα, Iα. 22Ne; deduced excited states in 22Ne, energies, J, π, angular correlations for α-decay, α-clusters. Comparison with shell model.

doi: 10.1134/S0021364011130170
Citations: PlumX Metrics


2011TO14      Eur.Phys.J. A 47, 158 (2011)

S.Yu.Torilov, M.Brenner, V.Z.Goldberg, K.A.Gridnev, S.V.Khlebnikov, T.V.Korovitskaya, T.Lonnroth, M.Mutterer, M.Norrby, B.G.Novatski, V.A.Rubchenya, J.M.K.Slotte, Yu.G.Sobolev, W.H.Trzaska, G.P.Tyurin, L.I.Vinogradov, V.I.Zherebchevsky

High-spin states in 22Ne populated in the 14C(12C, α) reaction

NUCLEAR REACTIONS 14C(12C, 2α), E=44 MeV; measured Eα, Iα(θ), αα-coin, αα angular correlations. 22Ne deduced high-spin levels, J, π, moment of inertia, 20,22Ne yrast lines.

doi: 10.1140/epja/i2011-11158-4
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Data from this article have been entered in the XUNDL database. For more information, click here.


2009PI08      Acta Phys.Pol. B40, 849 (2009)

E.Piasecki, A.Trzcinska, W.Gawlikowicz, J.Jastrzebski, N.Keeley, M.Kisielinski, S.Kliczewski, A.Kordyasz, M.Kowalczyk, S.Khlebnikov, E.Koshchiy, E.Kozulin, T.Krogulski, T.Lotkiev, M.Mutterer, K.Piasecki, A.Piorkowska, K.Rusek, A.Staudt, I.Strojek, W.H.Trzaska, M.Sillanpaa, S.Smirnov, G.Tiourin, K.Hagino, N.Rowley

Are the Weak Channels Really Weak?


2009PI15      Phys.Rev. C 80, 054613 (2009)

E.Piasecki, L.Swiderski, W.Gawlikowicz, J.Jastrzebski, N.Keeley, M.Kisielinski, S.Kliczewski, A.Kordyasz, M.Kowalczyk, S.Khlebnikov, E.Koshchiy, E.Kozulin, T.Krogulski, T.Loktev, M.Mutterer, K.Piasecki, A.Piorkowska, K.Rusek, A.Staudt, M.Sillanpaa, S.Smirnov, I.Strojek, G.Tiourin, W.H.Trzaska, A.Trzcinska, K.Hagino, N.Rowley

Effects of weakly coupled channels on quasielastic barrier distributions

NUCLEAR REACTIONS 90,92Zr(20Ne, X), E=36-64 MeV; measured backscattered particle spectra, quasielastic σ; deduced barrier distributions, inelastic Q-value spectra and particle-transfer σ. Comparison with coupled-channel calculations.

doi: 10.1103/PhysRevC.80.054613
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2008MU24      Phys.Rev. C 78, 064616 (2008)

M.Mutterer, Yu.N.Kopatch, S.R.Yamaledtinov, V.G.Lyapin, J.von Kalben, S.V.Khlebnikov, M.Sillanpaa, G.P.Tyurin, W.H.Trzaska

Energy distribution of ternary α particles in spontaneous fission of 252Cf

RADIOACTIVITY 252Cf(SF); measured Eα, Iα for ternary α particles, ternary 6He-spectra; deduced 6He/4He ratio.

doi: 10.1103/PhysRevC.78.064616
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset23057.


2008PE21      Phys.Atomic Nuclei 71, 1149 (2008); Yad.Fiz. 71, 1177 (2008)

G.A.Petrov, A.M.Gagarskii, I.S.Guseva, Yu.N.Kopatch, F.Gonnenwein, M.Mutterer

Prospects for further studies of effects of T-odd asymmetry in the emission of light particles in the polarized-neutron-induced ternary fission of heavy nuclei

NUCLEAR REACTIONS 233U(polarized n, F), E=resonance;235U(polarized n, F), E=resonance;239Pu(polarized n, F), E=resonance;245Cm(polarized n, F), E=resonance; analyzed ternary fission fragments angular correlations, asymmetries; Comparison with trajectory calculations.

doi: 10.1134/S1063778808070041
Citations: PlumX Metrics


2007PI02      Int.J.Mod.Phys. E16, 502 (2007)

E.Piasecki, L.Swiderski, K.Rusek, M.Kisielinski, J.Jastrzebski, A.Kordyasz, M.Kowalczyk, M.Mutterer, T.Krogulski, K.Piasecki, P.Russotto, A.M.Stefanini, N.Rowley

Structure of barrier distributions: probing the role of neutron-transfer channels

NUCLEAR REACTIONS 90,92Zr(20Ne, X), E ≈ 42-62 MeV; measured quasi-elastic σ; deduced barrier distribution, role of neutron-transfer channels.

doi: 10.1142/S0218301307005934
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2007VA09      Bull.Rus.Acad.Sci.Phys. 71, 354 (2007); Izv.Akad.Nauk RAS, Ser.Fiz. 71, 368 (2007)

G.V.Valskii, A.S.Vorobev, A.M.Gagarskii, I.S.Guseva, F.Gonnenwein, T.A.Zavarukhina, Yu.N.Kopach, D.O.Krinitsyn, M.Mutterer, G.A.Petrov, V.I.Petrova, V.E.Sokolov, O.A.Shcherbakov

Experimental Studies of Nuclear Fission Dynamics Near the Scission Point

NUCLEAR REACTIONS 233,235U, 239Pu, 245Cm(polarized n, F), E=low; measured energy and angular distributions of the fission fragments; deduced symmetry coefficients of fragment emission.

doi: 10.3103/S1062873807030112
Citations: PlumX Metrics


2006DO02      Nucl.Phys. A766, 1 (2006)

A.V.Dobrovolsky, G.D.Alkhazov, M.N.Andronenko, A.Bauchet, P.Egelhof, S.Fritz, H.Geissel, C.Gross, A.V.Khanzadeev, G.A.Korolev, G.Kraus, A.A.Lobodenko, G.Munzenberg, M.Mutterer, S.R.Neumaier, T.Schafer, C.Scheidenberger, D.M.Seliverstov, N.A.Timofeev, A.A.Vorobyov, V.I.Yatsoura

Study of the nuclear matter distribution in neutron-rich Li isotopes

NUCLEAR REACTIONS 1H(6Li, 6Li), (8Li, 8Li), (9Li, 9Li), (11Li, 11Li), E=700 MeV/nucleon; measured, analyzed small-angle elastic scattering σ(θ). 6,8,9,11Li deduced radii, matter distributions.

doi: 10.1016/j.nuclphysa.2005.11.016
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1326.


2005CH50      Nucl.Phys. A759, 43 (2005)

L.V.Chulkov, F.Aksouh, A.Bleile, O.V.Bochkarev, D.Cortina-Gil, A.V.Dobrovolsky, P.Egelhof, H.Geissel, M.Hellstrom, N.B.Isaev, O.A.Kiselev, B.G.Komkov, M.Matos, F.N.Moroz, G.Munzenberg, M.Mutterer, V.A.Mylnikov, S.R.Neumaier, V.N.Pribora, D.M.Seliverstov, L.O.Sergeev, A.Shrivastava, K.Summerer, S.Yu.Torilov, H.Weick, M.Winkler, V.I.Yatsoura

Quasi-free scattering with 6, 8He beams

NUCLEAR REACTIONS 1H(6He, p), (6He, np), (6He, pα), E=717 MeV/nucleon; 1H(8He, p), (8He, np), (8He, pα), E=671 MeV/nucleon; measured recoil proton spectra, σ(E, θ). 6,8He deduced cluster configurations, spectroscopic factors.

doi: 10.1016/j.nuclphysa.2005.05.148
Citations: PlumX Metrics


2005JE04      Eur.Phys.J. A 24, 379 (2005)

P.Jesinger, Yu.N.Kopatch, M.Mutterer, F.Gonnenwein, A.M.Gagarski, J.V.Kalben, V.Nesvizhevsky, G.A.Petrov, W.H.Trzaska, H.-J.Wollersheim

New experimental studies on the quaternary fission of 233, 235U(nth, f) and 252Cf(sf)

RADIOACTIVITY 252Cf(SF); measured Eα, light charged particle yields, spectra, coincidences from quaternary fission; deduced fission mechanism features.

NUCLEAR REACTIONS 233,235U(n, F), E=thermal; measured Eα, light charged particle yields, spectra, coincidences from quaternary fission; deduced fission mechanism features.

doi: 10.1140/epja/i2005-10026-2
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset22925.


2005KI21      Eur.Phys.J. A 25, Supplement 1, 215 (2005)

O.A.Kiselev, F.Aksouh, A.Bleile, O.V.Bochkarev, L.V.Chulkov, D.Cortina-Gil, A.V.Dobrovolsky, P.Egelhof, H.Geissel, M.Hellstrom, N.B.Isaev, B.G.Komkov, M.Matos, F.V.Moroz, G.Munzenberg, M.Mutterer, V.A.Mylnikov, S.R.Neumaier, V.N.Pribora, D.M.Seliverstov, L.O.Sergueev, A.Shrivastava, K.Summerer, H.Weick, M.Winkler, V.I.Yatsoura

Investigation of nuclear matter distribution of the neutron-rich He isotopes by proton elastic scattering at intermediate energies

NUCLEAR REACTIONS 1H(6He, p), (8He, p), E ≈ 700 MeV/nucleon; measured recoil proton spectra, σ(E, θ). 6,8He deduced nuclear matter density distributions, charge radii, cluster configurations, spectroscopic factors.

doi: 10.1140/epjad/i2005-06-156-3
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2005LO05      Acta Phys.Pol. B36, 1245 (2005)

R.Lozeva, S.Mandal, J.Gerl, M.Gorska, J.Grebosz, I.Kojouharov, J.Adamczewski, A.Banu, F.Becker, T.Beck, P.Bednarczyk, A.Blazhev, P.Doornenbal, H.Geissel, M.Hellstrom, M.Kavatsyuk, O.Kavatsyuk, N.Kurz, M.Mutterer, S.Muralithar, G.Munzenberg, W.Prokopowicz, N.Saito, T.Saitoh, H.Schaffner, K.Summerer, H.Weick, M.Winkler, C.Wheldon, H.-J.Wollersheim

Calorimeter telescope for identification of relativistic heavy ion reaction channels


2005PI10      Phys.Lett. B 615, 55 (2005)

E.Piasecki, L.Swiderski, P.Czosnyka, M.Kowalczyk, K.Piasecki, M.Witecki, T.Czosnyka, J.Jastrzebski, A.Kordyasz, M.Kisielinski, T.Krogulski, M.Mutterer, S.Khlebnikov, W.H.Trzaska, K.Hagino, N.Rowley

Absence of structure in the 20, 22Ne + 118Sn quasi-elastic barrier distribution

NUCLEAR REACTIONS 118Sn(20Ne, X), (22Ne, X), E ≈ 50-80 MeV; measured particle spectra; deduced quasi-elastic barrier distributions. Coupled channels analysis.

doi: 10.1016/j.physletb.2005.03.070
Citations: PlumX Metrics


2005WO01      Nucl.Instrum.Methods Phys.Res. A537, 637 (2005)

H.J.Wollersheim, D.E.Appelbe, A.Banu, R.Bassini, T.Beck, F.Becker, P.Bednarczyk, K.-H.Behr, M.A.Bentley, G.Benzoni, C.Boiano, U.Bonnes, A.Bracco, S.Brambilla, A.Brunle, A.Burger, K.Burkard, P.A.Butler, F.Camera, D.Curien, J.Devin, P.Doornenbal, C.Fahlander, K.Fayz, H.Geissel, J.Gerl, M.Gorska, H.Grawe, J.Grebosz, R.Griffiths, G.Hammond, M.Hellstrom, J.Hoffmann, H.Hubel, J.Jolie, J.V.Kalben, M.Kmiecik, I.Kojouharov, R.Kulessa, N.Kurz, I.Lazarus, J.Li, J.Leske, R.Lozeva, A.Maj, S.Mandal, W.Meczynski, B.Million, G.Munzenberg, S.Muralithar, M.Mutterer, P.J.Nolan, G.Neyens, J.Nyberg, W.Prokopowicz, V.F.E.Pucknell, P.Reiter, D.Rudolph, N.Saito, T.R.Saito, D.Seddon, H.Schaffner, J.Simpson, K.-H.Speidel, J.Styczen, K.Summerer, N.Warr, H.Weick, C.Wheldon, O.Wieland, M.Winkler, M.Zieblinski

Rare ISotopes INvestigation at GSI (RISING) using gamma-ray spectroscopy at relativistic energies

NUCLEAR REACTIONS 197Au(84Kr, 84Kr'), (56Cr, 56Cr'), (108Sn, 108Sn'), E=113-142 MeV/nucleon; measured Eγ, Iγ following projectile Coulomb excitation. 84Kr, 56Cr, 108Sn deduced transitions. 9Be(55Ni, X)54Co/52Fe/50Cr, E=171 MeV/nucleon; measured Eγ, Iγ, (particle)γ-coin.

doi: 10.1016/j.nima.2004.08.072
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2004GO03      Phys.Rev. C 69, 024602 (2004)

V.Z.Goldberg, G.V.Rogachev, W.H.Trzaska, J.J.Kolata, A.Andreyev, C.Angulo, M.J.G.Borge, S.Cherubini, G.Chubarian, G.Crowley, P.Van Duppen, M.Gorska, M.Gulino, M.Huyse, P.Jesinger, K.-M.Kallman, M.Lattuada, T.Lonnroth, M.Mutterer, R.Raabe, S.Romano, M.V.Rozhkov, B.B.Skorodumov, C.Spitaleri, O.Tengblad, A.Tumino

Investigation of the α-cluster structure of 22Ne and 22Mg

NUCLEAR REACTIONS 4He(18O, 18O), E < 80 MeV; 4He(18Ne, 18Ne), E < 53 MeV; measured σ(θ), excitation functions. 22Ne deduced resonance energies, J, π, widths, α-cluster features. 22Mg deduced level energies, J, α-cluster features. Thick-target inverse kinematics method.

doi: 10.1103/PhysRevC.69.024602
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0352.


2004MU18      Nucl.Phys. A738, 122 (2004)

M.Mutterer, Yu.N.Kopatch, P.Jesinger, A.M.Gagarski, F.Gonnenwein, J.v.Kalben, S.G.Khlebnikov, I.Kojouharov, E.Lubkiewicz, Z.Mezentseva, V.Nesvizhevsky, G.A.Petrov, H.Schaffner, H.Scharma, D.Schwalm, P.Thirolf, W.H.Trzaska, G.P.Tyurin, H.-J.Wollersheim

Recent Experimental Studies on Particle-Accompanied Fission

RADIOACTIVITY 252Cf(SF); measured light charged particle spectra, yields in particle-accompanied fission.

NUCLEAR REACTIONS 233,235U(n, F), E=thermal; measured light charged particle spectra, yields in particle-accompanied fission.

doi: 10.1016/j.nuclphysa.2004.04.020
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset22925.


2004SW02      Int.J.Mod.Phys. E13, 315 (2004)

L.Swiderski, P.Czosnyka, M.Kowalczyk, E.Piasecki, K.Piasecki, M.Witecki, J.Jastrzebski, A.Kordyasz, M.Kisielinski, T.Krogulski, N.Rowley, C.Marchetta, A.Pagano, M.Mutterer, W.H.Trzaska, K.Hagino

How many fusion barriers?

NUCLEAR REACTIONS 112,116,118Sn(20Ne, X), E=64-88 MeV; measured quasi-elastic scattering excitation functions; deduced fusion barrier distributions. Comparison with model predictions.

doi: 10.1142/S0218301304002119
Citations: PlumX Metrics


2003BU26      Bull.Rus.Acad.Sci.Phys. 67, 687 (2003)

V.E.Bunakov, F.Goennenwein, P.Jesinger, M.Mutterer, G.A.Petrov

Asymmetry of ternary nuclear fission induced by polarized neutrons and fission mechanism

NUCLEAR REACTIONS 233U(polarized n, F), E=low; analyzed ternary fission fragments angular correlations, asymmetries; deduced fission mechanism features.


2003GO38      Acta Phys.Hung.N.S. 18, 215 (2003)

V.Z.Goldberg, W.H.Trzaska, G.V.Rogachev, J.J.Kolata, A.Andreyev, C.Angulo, M.J.G.Borge, S.Cherubini, G.Chubarian, G.Crowley, A.S.Fomichev, M.Gorska, M.Gulino, M.S.Golovkov, M.Huyse, K.-M.Kallman, M.Lattuada, T.Lonnroth, M.Mutterer, R.Raabe, A.M.Rodin, S.Romano, M.V.Rozhkov, B.B.Skorodumov, C.Spitaleri, O.Tengblad, G.M.Ter-Akopian, A.Tumino, P.Van Duppen, R.Wolski

New Perspectives in the Studies of Resonance Scattering

doi: 10.1556/APH.18.2003.2-4.15
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2003GO39      Acta Phys.Hung.N.S. 18, 419 (2003)

F.Gonnenwein, P.Jesinger, M.Mutterer, W.H.Trzaska, G.A.Petrov, A.M.Gagarski, V.Nesvizhevsky, P.Geltenbort

Quaternary Fission

NUCLEAR REACTIONS 233,235U(n, F), E=thermal; measured ternary and quaternary fission light particle and fission fragment yields; deduced fission mechanism features.

doi: 10.1556/APH.18.2003.2-4.52
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2003JE09      Acta Phys.Hung.N.S. 18, 415 (2003)

P.Jesinger, F.Gonnenwein, M.Mutterer, A.M.Gagarski, G.A.Petrov, W.H.Trzaska, V.Nesvizhevsky, I.Kuznetsov, P.Geltenbort, S.V.Khlebnikov, G.P.Tiourin, A.V.Evsenin

Correlations in Ternary Fission

NUCLEAR REACTIONS 233U(polarized n, F), E=low; measured binary and ternary fission associated left-right asymmetry, triple correlation.

doi: 10.1556/APH.18.2003.2-4.51
Citations: PlumX Metrics


2003KO78      Acta Phys.Hung.N.S. 18, 399 (2003)

Yu.N.Kopatch, M.Mutterer, P.Jesinger, J.von Kalben, I.Kojouharov, H.Schaffner, H.-J.Wollersheim, N.Kurz, E.Lubkiewicz, P.Adrich, H.Sharma, A.Wagner, Z.Mezentseva, W.H.Trzaska, A.Krasznahorkay, F.Gonnenwein

Spontaneous Ternary Fission of 252Cf: New Experiment with GSI Super Clover Detectors

RADIOACTIVITY 252Cf(SF); measured ternary fission associated Eγ, Iγ, (charged particle)γ-coin.

doi: 10.1556/APH.18.2003.2-4.48
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset22938.


2003MU30      Acta Phys.Hung.N.S. 18, 393 (2003)

M.Mutterer, Yu.N.Kopatch

Recent Experimental Studies on 252Cf Ternary Fission

RADIOACTIVITY 252Cf(SF); analyzed ternary and quaternary fission associated Eγ, Iγ, light charged particle spectra, neutron angular distributions, αα-coin.

doi: 10.1556/APH.18.2003.2-4.47
Citations: PlumX Metrics


2002AL26      Nucl.Phys. A712, 269 (2002)

G.D.Alkhazov, A.V.Dobrovolsky, P.Egelhof, H.Geissel, H.Irnich, A.V.Khanzadeev, G.A.Korolev, A.A.Lobodenko, G.Munzenberg, M.Mutterer, S.R.Neumaier, W.Schwab, D.M.Seliverstov, T.Suzuki, A.A.Vorobyov

Nuclear matter distributions in the 6He and 8He nuclei from differential cross sections for small-angle proton elastic scattering at intermediate energy

NUCLEAR REACTIONS 1H(α, α), (6He, 6He), (8He, 8He), E ≈ 0.7 GeV/nucleon; analyzed small-angle elastic scattering σ(θ). 6,8He deduced density distributions, radii. Comparison with model predictions, previous results.

doi: 10.1016/S0375-9474(02)01273-3
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2002EG02      Eur.Phys.J. A 15, 27 (2002)

P.Egelhof, G.D.Alkhazov, M.N.Andronenko, A.Bauchet, A.V.Dobrovolsky, S.Fritz, G.E.Gavrilov, H.Geissel, C.Gross, A.V.Khanzadeev, G.A.Korolev, G.Kraus, A.A.Lobodenko, G.Munzenberg, M.Mutterer, S.R.Neumaier, T.Schafer, C.Scheidenberger, D.M.Seliverstov, N.A.Timofeev, A.A.Vorobyov, V.I.Yatsoura

Nuclear-matter distributions of halo nuclei from elastic proton scattering in inverse kinematics

NUCLEAR REACTIONS 1H(6Li, 6Li), (8Li, 8Li), (9Li, 9Li), (11Li, 11Li), (6He, 6He), (8He, 8He), E ≈ 700 MeV/nucleon; measured σ(θ). 6,8He, 6,8,9,11Li deduced radii. Comparison with previous results, model predictions.

doi: 10.1140/epja/i2001-10219-7
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2002JE06      Yad.Fiz. 65, 662 (2002); Phys.Atomic Nuclei 65, 630 (2002)

P.Jesinger, A.Kotzle, F.Gonnenwein, M.Mutterer, J.von Kalben, G.V.Danilyan, V.S.Pavlov, G.A.Petrov, A.M.Gagarski, W.H.Trzaska, S.M.Soloviev, V.V.Nesvizhevsky, O.Zimmer

Angular Correlations in Ternary Fission Induced by Polarized Neutrons

NUCLEAR REACTIONS 233,235U(polarized n, F), E=low; measured Eα, α-particle and fission fragment angular correlations, triple correlation with beam polarization. Ternary fission.

doi: 10.1134/1.1471264
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset23106.


2002KO19      Phys.Rev. C65, 044614 (2002)

Yu.N.Kopatch, M.Mutterer, D.Schwalm, P.Thirolf, F.Gonnenwein

5He, 7He, and 8Li(E* = 2.26 MeV) Intermediate Ternary Particles in the Spontaneous Fission of 252Cf

RADIOACTIVITY 252Cf(SF); measured neutron, light charged particle, fission fragment spectra, angular correlations following ternary fission; deduced ternary fission yields, evidence for 5,7He, 8Li.

doi: 10.1103/PhysRevC.65.044614
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset23099.


2002NE19      Nucl.Phys. A712, 247 (2002)

S.R.Neumaier, G.D.Alkhazov, M.N.Andronenko, A.V.Dobrovolsky, P.Egelhof, G.E.Gavrilov, H.Geissel, H.Irnich, A.V.Khanzadeev, G.A.Korolev, A.A.Lobodenko, G.Munzenberg, M.Mutterer, W.Schwab, D.M.Seliverstov, T.Suzuki, N.A.Timofeev, A.A.Vorobyov, V.I.Yatsoura

Small-angle proton elastic scattering from the neutron-rich isotopes 6He and 8He, and from 4He, at 0.7 GeV in inverse kinematics

NUCLEAR REACTIONS 1H(α, α), (6He, 6He), (8He, 8He), E ≈ 0.7 GeV/nucleon; measured small-angle elastic scattering σ(θ); deduced integral elastic σ, total and reaction σ. Halo nuclei.

doi: 10.1016/S0375-9474(02)01274-5
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA0493.


2002RU04      Yad.Fiz. 65, 729 (2002); Phys.Atomic Nuclei 65, 697 (2002)

V.A.Rubchenya, W.H.Trzaska, J.Aysto, A.A.Alexandrov, I.D.Alkhazov, K.-T.Brinkmann, A.Evsenin, S.V.Khlebnikov, A.V.Kuznetsov, V.G.Lyapin, M.Mutterer, Yu.E.Penionzhkevich, O.I.Osetrov, Z.Radivojevic, Yu.G.Sobolev, G.P.Tyurin, D.N.Vakhtin

Inelastic Deuteron Breakup Followed by Fission at Intermediate Energy

NUCLEAR REACTIONS 238U(d, F), (d, pF), (d, nF), E=65 MeV; measured proton spectra, neutron spectra, fission fragment mass distributions; deduced reaction mechanism features. Comparison with model predictions.

doi: 10.1134/1.1471276
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2001PY01      Eur.Phys.J. A 10, 171 (2001)

Yu.V.Pyatkov, Yu.E.Penionzhkevich, W.H.Trzaska, O.I.Osetrov, A.A.Alexandrov, I.A.Alexandrova, J.Aysto, K.-Th.Brinkmann, S.V.Khlebnikov, V.F.Kushniruk, A.V.Kuznetsov, V.G.Lyapin, V.A.Maslov, M.Mutterer, Z.Radivojevic, V.A.Rubchenya, Yu.G.Sobolev, G.P.Tiourin, D.N.Vakhtin

Peculiarities in Fragment Mass Distribution in the 238U + 40Ar (243 MeV) Reaction

NUCLEAR REACTIONS 238U(40Ar, X), E=243 MeV; measured fragments mass distributions, kinetic energies, neutron spectra; deduced fine structure in mass distribution.

doi: 10.1007/s100500170129
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2001RO29      Phys.Rev. C64, 051302 (2001)

G.V.Rogachev, V.Z.Goldberg, T.Lonnroth, W.H.Trzaska, S.A.Fayans, K.-M.Kallman, J.J.Kolata, M.Mutterer, M.V.Rozhkov, B.B.Skorodumov

Doubling of α-Cluster States in 22Ne

NUCLEAR REACTIONS 4He(18O, 18O), E(cm)=2.1-12.5 MeV; measured excitation functions, σ(θ). 22Ne deduced resonance energies, J, π, α-cluster states.

doi: 10.1103/PhysRevC.64.051302
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO0964.


2001TO18      Nucl.Phys. A690, 298c (2001)

M.Tomaselli, S.Fritzsche, A.Dax, P.Egelhof, C.Kozhuharov, T.Kuhl, D.Marx, M.Mutterer, S.R.Neumaier, W.Nortershauser, H.Wang, H.-J.Kluge

Microscopic Model for Charge and Matter Distributions of Nuclei

NUCLEAR STRUCTURE 5,6,7,9,11Li; calculated charge and matter density distributions, radii. Interacting microscopic clusters. Comparison with data.

doi: 10.1016/S0375-9474(01)00963-0
Citations: PlumX Metrics


2000DA25      Yad.Fiz. 63, No 9, 1759 (2000); Phys.Atomic Nuclei 63, 1671 (2000)

G.V.Danilyan, A.M.Fedorov, A.M.Gagarski, F.Goennenwein, P.Jesinger, J.von Kalben, A.Kotzle, E.I.Korobkina, I.T.Krasnoshchekova, M.Mutterer, V.V.Nesvizhevsky, S.R.Neumaier, Yu.B.Novozhilov, V.S.Pavlov, G.A.Petrov, V.I.Petrova, S.M.Solovyev, W.H.Trzaska, O.Zimmer

Left-Right Asymmetry of the Angular Distribution of Long-Range Alpha Particles from Ternary 235U Fission Induced by Cold Polarized Neutrons

NUCLEAR REACTIONS 233,235U(polarized n, F), E=0.0017 eV; measured (fragment)α-coin following ternary fission, α angular distribution, correlation coefficient. Effect of nuclear resonances discussed.

doi: 10.1134/1.1312903
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2000JE02      Nucl.Instrum.Methods Phys.Res. A440, 618 (2000)

P.Jesinger, A.Kotzle, A.M.Gagarski, F.Gonnenwein, G.Danilyan, V.S.Pavlov, V.B.Chvatchkin, M.Mutterer, S.R.Neumaier, G.A.Petrov, V.I.Petrova, V.Nesvizhevsky, O.Zimmer, P.Geltenbort, K.Schmidt, K.Korobkina

Observation of a Triple Correlation in Ternary Fission: Is time reversal invariance violated ?

NUCLEAR REACTIONS 233U(polarized n, F), E=reactor; measured ternary particle, fission fragment correlations; deduced possible time reversal asymmetry features.

doi: 10.1016/S0168-9002(99)01051-7
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2000OG06      Phys.Rev. C62, 044601 (2000)

A.A.Ogloblin, Yu.A.Glukhov, W.H.Trzaska, A.S.Demyanova, S.A.Goncharov, R.Julin, S.V.Klebnikov, M.Mutterer, M.V.Rozhkov, V.P.Rudakov, G.P.Tiorin, D.T.Khoa, G.R.Satchler

New Measurement of the Refractive, Elastic 16O + 12C Scattering at 132, 170, 200, 230, and 260 MeV Incident Energies

NUCLEAR REACTIONS 12C(16O, 16O), E=132, 170, 200, 230, 260 MeV; measured σ(θ); deduced rainbow scattering features, optical model parameters.

doi: 10.1103/PhysRevC.62.044601
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1336.


2000TO11      Phys.Rev. C62, 067305 (2000)

M.Tomaselli, M.Hjorth-Jensen, S.Fritzsche, P.Egelhof, S.R.Neumaier, M.Mutterer, T.Kuhl, A.Dax, H.Wang

Matter and Charge Distributions of 6He and 5, 6, 7, 9Li within the Dynamic-Correlation Model

NUCLEAR STRUCTURE 6He, 5,6,7,9Li; calculated matter and charge distributions, radii, halo features. Dynamic-correlation model.

doi: 10.1103/PhysRevC.62.067305
Citations: PlumX Metrics


2000TO13      Hyperfine Interactions 127, 95 (2000)

M.Tomaselli, P.Egelhof, S.R.Neumaier, M.Mutterer, T.Kuhl, A.Dax, F.Schmitt, S.Fritzsche

Microscopic calculations of matter and charge distributions of exotic nuclei within the Dynamic-Correlation Model

NUCLEAR STRUCTURE 6He, 5,6,7,8Li; calculated matter and charge distributions, radii. Dynamic-correlation model.

NUCLEAR REACTIONS 6He(p, p), E not given; calculated σ(θ). Comparison with data.

doi: 10.1023/A:1012658609988
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1999JE08      Yad.Fiz. 62, No 9, 1723 (1999); Phys.Atomic Nuclei 62, 1608 (1999)

P.Jesinger, G.V.Danilyan, A.M.Gagarsky, P.Geltenbort, F.Goennenwein, A.Kotzle, E.I.Korobkina, M.Mutterer, V.Nesvizhevsky, S.R.Neumaier, V.S.Pavlov, G.A.Petrov, V.I.Petrova, K.Schmidt, V.B.Shvachkin, O.Zimmer

Interference Effect in the Angular Distribution of Outgoing Particles in Ternary Fission Induced by Cold Polarized Neutrons

NUCLEAR REACTIONS 233U(polarized n, F), E=low; measured (fragment)α-coin following ternary fission; deduced asymmetry factor, interference effect.


1999KO01      Phys.Rev.Lett. 82, 303 (1999)

Yu.N.Kopach, P.Singer, M.Mutterer, M.Klemens, A.Hotzel, D.Schwalm, P.Thirolf, M.Hesse, F.Gonnenwein

Angular Anisotropy of Prompt γ Rays and Fragment Spin Alignment in Binary and Light-Charged-Particle-Accompanied Spontaneous Fission of 252Cf

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ(θ), (fragment)γ-coin, γγ(θ), γ-ray anisotropy for binary, ternary fission modes; deduced fragment spin formation mechanism features.

doi: 10.1103/PhysRevLett.82.303
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset22461.


1999OS03      Bull.Rus.Acad.Sci.Phys. 63, 174 (1999)

O.I.Osetrov, A.A.Aleksandrov, I.D.Alkhazov, J.Aysto, D.N.Vakhtin, J.von Kalben, A.V.Kuznetsov, V.G.Lyapin, M.Mutterer, H.-G.Ortlepp, Yu.E.Penionzhkevich, Yu.V.Pyatkov, V.A.Rubchenya, G.P.Tyurin, W.Trzaska, S.V.Khlebnikov

Multiplicities of α Particles in 58Ni + 112, 118, 124Sn Reactions at ENi = 340 MeV

NUCLEAR REACTIONS 112,118,124Sn(58Ni, F), E=340 MeV; measured σ(Eα, θ), (Fragment)α-coin following fission; deduced α-particles Coulomb barriers, pre- and post-scission multiplicities. Statistical Model Calculations.


1999TR02      Acta Phys.Slovaca 49, 93 (1999)

W.H.Trzaska, J.Aysto, Z.Radivojevic, V.A.Rubchenya, I.D.Alkhazov, S.V.Khlebnikov, A.V.Kuznetsov, A.Evsenin, V.G.Lyapin, O.I.Osetrov, G.P.Tiourin, D.N.Vakhtin, A.A.Alexandrov, Yu.E.Penionzhkevich, Yu.V.Pyatkov, Yu.G.Sobolev, M.Mutterer, J.von Kalben, K.Brinkmann

Particle Emission as a Probe for Dynamics of Fission of Heated Nuclei

NUCLEAR REACTIONS 124Sn(58Ni, X), E=320 MeV; 142Nd(40Ar, X), E=243 MeV; 162Er(20Ne, X), E=160 MeV; measured neutron, proton, α multiplicities; deduced fusion-fission reaction mechanism features. 238U(p, F), E=20, 35, 50, 60 MeV; measured fission fragment yields, neutron multiplicity vs fragment mass.


1998AY02      Yad.Fiz. 61, No 12, 2135 (1998); Phys.Atomic Nuclei 61, 2024 (1998)

J.Aysto, W.H.Trzaska, I.A.Kukushkin, V.E.Makarenko, Yu.D.Molchanov, G.A.Otroshchenko, D.N.Vakhtin, V.T.Lyapin, O.I.Osetrov, G.P.Tyurin, S.V.Khlebnikov, A.A.Aleksandrov, M.Mutterer, J.von Kalben

Ternary Fission in 4He + 238U Interaction

NUCLEAR REACTIONS 238U(α, F), E=24 MeV; measured fission fragments yields, light charged particles spectra; deduced ternary fission probability. Comparison with spontaneous fission, n-, γ-induced fission.

RADIOACTIVITY 252Cf(SF); measured α spectra.


1998TR07      Bull.Rus.Acad.Sci.Phys. 62, 830 (1998)

W.Trzaska, A.A.Aleksandrov, I.D.Alkhazov, J.Aysto, D.N.Vakhtin, A.V.Kuznetsov, V.G.Lyapin, V.Makarenko, M.Mutterer, H.-G.Ortlepp, O.L.Osetrov, Yu.E.Penionzhkevich, Yu.V.Pyatkov, V.A.Rubchenya, G.P.Tyurin, S.V.Khlebnikov

Nuclear Fusion-Fission Reaction Dynamics at HENDES


1998TR08      Nuovo Cim. 111A, 1055 (1998)

W.H.Trzaska, V.A.Rubchenya, J.Aysto, Z.Radivojevic, D.N.Vakhtin, I.D.Alkhazov, A.Evsenin, S.V.Khlebnikov, A.V.Kuznetsov, V.G.Lyapin, O.I.Osetrov, G.P.Tiourin, A.A.Alexandrov, Yu.E.Penionzhkevich, Yu.G.Sobolev, M.Mutterer

Fragment Mass Distribution in Superasymmetric Region in Proton-Induced Fission of U and Th

NUCLEAR REACTIONS 238U(p, F), E=20, 35, 50, 65 MeV; 232Th(p, F), E=50, 60 MeV; measured fission fragment mass yields, neutron multiplicities; deduced asymmetric mass distribution enhancement.

doi: 10.1007/BF03035992
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1285.


1997AL09      Phys.Rev.Lett. 78, 2313 (1997)

G.D.Alkhazov, M.N.Andronenko, A.V.Dobrovolsky, P.Egelhof, G.E.Gavrilov, H.Geissel, H.Irnich, A.V.Khanzadeev, G.A.Korolev, A.A.Lobodenko, G.Munzenberg, M.Mutterer, S.R.Neumaier, F.Nickel, W.Schwab, D.M.Seliverstov, T.Suzuki, J.P.Theobald, N.A.Timofeev, A.A.Vorobyov, V.I.Yatsoura

Nuclear Matter Distributions in 6He and 8He from Small Angle p-He Scattering in Inverse Kinematics at Intermediate Energy

NUCLEAR REACTIONS 1H(α, α), (6He, 6He), (8He, 8He), E=674-699 MeV/nucleon; measured absolute differential σ; deduced model parameters. 6,8He deduced nuclear matter radii.

doi: 10.1103/PhysRevLett.78.2313
Citations: PlumX Metrics


1997SI23      Z.Phys. A359, 41 (1997)

P.Singer, M.Mutterer, Y.N.Kopach, M.Klemens, A.Hotzel, D.Schwalm, P.Thirolf, M.Hesse

High-Energy γ-Rays in α-Accompanied Spontaneous Fission of 252Cf

RADIOACTIVITY 252Cf(SF); measured Eα, Iα, fragment mass, energy distributions in α-accompanied fission, Eγ, Iγ, γ multiplicity; deduced equilibrated fission fragments disintegration role in high energy γ enhancement.

doi: 10.1007/s002180050365
Citations: PlumX Metrics


1997TR06      Acta Phys.Pol. B28, 443 (1997)

W.H.Trzaska, V.A.Rubchenya, A.A.Alexandrov, I.D.Alkhazov, J.Aysto, J.von Kalben, S.V.Khlebnikov, A.V.Kuznetsov, V.G.Lyapin, V.E.Makarenko, I.Moltchanov, M.Mutterer, O.I.Osetrov, H.-G.Ortlepp, G.Otroshchenko, Yu.E.Penionzhkevich, Yu.V.Pyatkov, G.P.Tiourin, D.N.Vakhtin

Research on Fission Dynamics at JYFL using HENDES - High Efficiency Neutron Detection System


1996HO26      Z.Phys. A356, 299 (1996)

A.Hotzel, P.Thirolf, Ch.Ender, D.Schwalm, M.Mutterer, P.Singer, M.Klemens, J.P.Theobald, M.Hesse, F.Gonnenwein, H.van der Ploeg

High-Energy Gamma-Rays Accompanying the Spontaneous Fission of 252Cf

RADIOACTIVITY 252Cf(SF); measured fragment total kinetic energy vs mass, Eγ, Iγ; deduced high energy γ production mechanism. Position sensitive double ionization chamber plus 4π γ-array.

doi: 10.1007/s002180050183
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset22757.


1995NE04      Nucl.Phys. A583, 799c (1995)

S.Neumaier, G.D.Alkhazov, M.N.Andronenko, T.Beha, K.-H.Behr, A.Brunle, K.Burkard, A.V.Dobrovolsky, P.Egelhof, C.Fischer, G.E.Gavrilov, H.Geissel, V.I.Iatsoura, H.Irnich, A.V.Khanzadeev, G.A.Korolev, A.A.Lobodenko, P.Lorenzen, G.Munzenberg, M.Mutterer, F.Nickel, W.Schwab, D.M.Seliverstov, P.Singer, T.Suzuki, J.P.Theobald, N.A.Timofeev, A.A.Vorobyov

Study of the Nucleon Density Distribution of 6He and 8He by Proton Elastic Scattering in Inverse Kinematics

NUCLEAR REACTIONS 1H(α, α), E=699 MeV/nucleon; 1H(6He, 6He), E=717 MeV/nucleon; 1H(8He, 8He), E=674 MeV/nucleon; measured differential σ vs four momentum transfer. 8He deduced neutron skin evidence.

doi: 10.1016/0375-9474(94)00761-B
Citations: PlumX Metrics


1994SC30      Nucl.Phys. A577, 674 (1994)

W.Schwab, H.-G.Clerc, M.Mutterer, J.P.Theobald, H.Faust

Cold Fission of 233U(n(th), f)

NUCLEAR REACTIONS 233U(n, F), E=thermal; measured light fission fragment nuclide yields at high kinetic energies; deduced yields at constant total excitation energy, ground-state yields, influence of level densities and scission barrier pentrabilities.

doi: 10.1016/0375-9474(94)90939-3
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset22300.


1990MA49      Nucl.Phys. A515, 433 (1990)

G.Martinez, G.Barreau, A.Sicre, T.P.Doan, P.Audouard, B.Leroux, W.Arafa, R.Brissot, J.P.Bocquet, H.Faust, P.Koczon, M.Mutterer, F.Gonnenwein, M.Asghar, U.Quade, K.Rudolph, D.Engelhardt, E.Piasecki

Mass and Nuclear Charge Yields for 237Np(2n(th), f) at Different Fission Fragment Kinetic Energies

NUCLEAR REACTIONS 239Np(n, F), E=thermal; measured light fission product mass versus kinetic energies; deduced fractional independent fission yields, odd-even effects of elements, isotones. Double neutron capture on 237Np target.

doi: 10.1016/0375-9474(90)90593-B
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset22179.


1989HE15      Nucl.Instrum.Methods Phys.Res. A278, 452 (1989)

P.Heeg, J.Pannicke, M.Mutterer, P.Schall, J.P.Theobald, K.Weingaertner, K.F.Hoffmann, K.Scheele, P.Zoller, G.Barreau, B.Leroux, F.Gonnenwein

The Double-Torus Ionization Chamber DIOGENES for the Investigation of Charged Particle Associated Nuclear Fission

NUCLEAR REACTIONS 235U, 239Pu(n, F), E=thermal; measured fission (fragment)(fragment)(θ), (fragment)α(θ). Toroidal angular position sensitive ionization chamber.

RADIOACTIVITY 252Cf(SF); measured fission (fragment)(fragment)(θ), (fragment)α(θ). Toroidal angular position sensitive ionization chamber.

doi: 10.1016/0168-9002(89)90865-6
Citations: PlumX Metrics


1988QU05      Nucl.Phys. A487, 1 (1988)

U.Quade, K.Rudolph, S.Skorka, P.Armbruster, H.-G.Clerc, W.Lang, M.Mutterer, C.Schmitt, J.P.Theobald, F.Gonnenwein, J.Pannicke, H.Schrader, G.Siegert, D.Engelhardt

Nuclide Yields of Light Fission Products from Thermal-Neutron Induced Fission of 233U at Differenct Kinetic Energies

NUCLEAR REACTIONS, Fission 233U(n, F), E=thermal; measured fission fragment mass, nuclear charge distributions vs kinetic energy; deduced independent, fractional independent yields, odd-even effects, average kinetic energies of the elements, reaction Q.

doi: 10.1016/0375-9474(88)90127-3
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset22130.


1987KO17      Phys.Lett. 191B, 249 (1987)

P.Koczon, M.Mutterer, J.P.Theobald, P.Geltenbort, F.Gonnenwein, A.Oed, M.S.Moore

Cold and ' Hot ' Fragmentation in Thermal Neutron Induced Fission of 245Cm

NUCLEAR REACTIONS 245Cm(n, F), E=thermal; measured fission fragment energy, mass distributions; deduced fragmentation mechanism. Tof spectrometer.

doi: 10.1016/0370-2693(87)90249-8
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset23587.


1987SC13      Phys.Lett. 191B, 339 (1987)

P.Schall, P.Heeg, M.Mutterer, J.P.Theobald

On Symmetric Tripartition in the Spontaneous Fission of 252Cf

RADIOACTIVITY 252Cf(SF); measured ternary fission fragment σ(θ), σ(E). Toroidal gridded ionization chamber.

doi: 10.1016/0370-2693(87)90619-8
Citations: PlumX Metrics


1986CL02      Nucl.Phys. A452, 277 (1986)

H.-G.Clerc, W.Lang, M.Mutterer, C.Schmitt, J.P.Theobald, U.Quade, K.Rudolph, P.Armbruster, F.Gonnenwein, H.Schrader, D.Engelhardt

Cold Fragmentation in Thermal-Neutron-Induced Fission of 233U and 235U

NUCLEAR REACTIONS 233,235U(n, F), E=thermal; measured light fission product mass yields at high kinetic energies; deduced influence of nucleon pairing, reaction Q.

doi: 10.1016/0375-9474(86)90310-6
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset22030.


1986DO08      Radiat.Eff. 93, 61 (1986)

T.P.Doan, G.Barreau, A.Sicre, F.Caitucoli, B.Leroux, J.P.Theobald, M.Mutterer, P.Koczon

Light Nuclei from the Thermal Neutron Induced Fission of 235U

NUCLEAR REACTIONS 235U(n, F)6He/10He/9Li/9Be/10Be/12Be/12B/15B/15C/18O/18C/21O/21Ne, E=thermal; measured light residuals yields following fission.

doi: 10.1080/00337578608207430
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset23715.


1986KO14      Radiat.Eff. 93, 49 (1986)

P.Koczon, M.Mutterer, J.P.Theobald, M.S.Moore, F.Goennenwein, P.Geltenbort, A.Oed, J.Pannicke

Mass and Energy Distribution of Fragments from the 245Cm(n(th), f) Reaction

NUCLEAR REACTIONS 245Cm(n, F), E=thermal; measured fission fragment mass yield vs fragment kinetic energy, long range Eα, σ(θα).

doi: 10.1080/00337578608207427
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset23587.


1986PA09      Radiat.Eff. 93, 45 (1986)

J.Pannicke, M.Mutterer, J.P.Theobald, P.Heeg, K.Weingaertner, G.Barreau, B.Leroux, F.Goennenwein

Long Range Alpha Particle Associated Neutron Induced Fission of U-235

NUCLEAR REACTIONS 235U(n, F), E=thermal; measured ternary fission (fragment)(fragment)(θ), (fragment)(fragment)α-coin. 236U deduced equatorial, polar ternary fission characteristics.

doi: 10.1080/00337578608207426
Citations: PlumX Metrics


1984SC38      Nucl.Phys. A430, 21 (1984)

C.Schmitt, A.Guessous, J.P.Bocquet, H.-G.Clerc, R.Brissot, D.Engelhardt, H.R.Faust, F.Gonnenwein, M.Mutterer, H.Nifenecker, J.Pannicke, Ch.Ristori, J.P.Theobald

Fission Yields at Different Fission-Product Kinetic Energies for Thermal-Neutron-Induced Fission of 239Pu

NUCLEAR REACTIONS 239Pu(n, F), E=thermal; measured fission fragment mass, charge distribution; deduced fragment fractional yields, odd-even effects, isobar average kinetic energies.

doi: 10.1016/0375-9474(84)90191-X
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset21928.


1983SP03      Phys.Rev.Lett. 51, 1522 (1983)

W.Spreng, F.Azgui, H.Emling, E.Grosse, R.Kulessa, Ch.Michel, D.Schwalm, R.S.Simon, H.J.Wollersheim, M.Mutterer, J.P.Theobald, M.S.Moore, N.Trautmann, J.L.Egido, P.Ring

First Observation of Backbending in an Actinide Nucleus

NUCLEAR REACTIONS 242,244Pu(208Pb, 208Pb'), E=5.1, 5.3 MeV/nucleon; measured Coulomb excitation, Doppler shifted γ-spectra, Eγ. 242,244Pu deduced levels, J, π, yrast transitions, backbending, proton shell alignment effects. Microscopic calculations.

doi: 10.1103/PhysRevLett.51.1522
Citations: PlumX Metrics


1980LE10      Nucl.Phys. A342, 37 (1980)

H.-D.Lemke, B.Ziegler, M.Mutterer, J.P.Theobald, N.Carjan

Absolute Photofission Cross Section of 209Bi in the Energy Range from 40 to 65 MeV

NUCLEAR REACTIONS 209Bi(γ, F), E=40-65 MeV; measured σ; deduced total photoabsorption σ for compound nucleus formation. Statistical model.

doi: 10.1016/0375-9474(80)90505-9
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetM0587.


1979WA06      Nucl.Phys. A320, 433 (1979)

P.Wastyn, H.Genz, M.Mutterer, A.Richter, G.Schrieder, J.C.Van Staden, J.P.Theobald

Elastic Scattering of 40Ar on 40Ca at E(lab) = 191, 236 and 272 MeV

NUCLEAR REACTIONS 40Ca(40Ar, 40Ar), E=191, 236, 272 MeV; measured σ(θ, E); deduced interaction radius, total reaction σ. Fitted Fresnel, optical models to data. Compared with microscopically calculated potentials.

doi: 10.1016/0375-9474(79)90200-8
Citations: PlumX Metrics


1979WA21      Nucl.Phys. A332, 455 (1979)

P.Wastyn, H.Feldmeier, F.Beck, M.Dworzecka, H.Genz, M.Mutterer, A.Richter, G.Schrieder, J.P.Theobald

Strongly Damped Collisions in the 40Ar + 40Ca System

NUCLEAR REACTIONS 40Ca(40Ar, X), E=191, 236, 272 MeV; measured σ(E, fragment charge, θ).

doi: 10.1016/0375-9474(79)90013-7
Citations: PlumX Metrics


1978WA18      S.Afr.J.Phys. 1, 224 (1978)

P.Wastyn, H.Genz, M.Mutterer, A.Richter, G.Schrieder, J.C.van Staden, J.P.Theobald

Elastic Scattering of 40Ar on 40Ca at E(lab) = 191, 236 and 272 MeV

NUCLEAR REACTIONS 40Ca(40Ar, 40Ar), E=191, 236, 272 MeV; measured σ(θ); deduced optical model parameters. Fresnel, optical, microscopic models.


1977BA48      Rev.Mod.Phys. 49, 77 (1977); Erratum Rev.Mod.Phys. 49, 961 (1977)

W.Bambynek, H.Behrens, M.H.Chen, B.Crasemann, M.L.Fitzpatrick, K.W.D.Ledingham, H.Genz, M.Mutterer, R.L.Intemann

Orbital Electron Capture by the Nucleus

COMPILATION Z=17-97; compiled, evaluated data on Q(ϵ), intershell capture ratios, ϵ/β+, radiative electron capture. Reviewed theory of nuclear electron capture, current ideas of weak interaction.

doi: 10.1103/RevModPhys.49.77
Citations: PlumX Metrics


1973MU13      Phys.Rev. C8, 1370 (1973)

M.Mutterer

Radiative Capture of s Electrons in the Decay of 51Cr

RADIOACTIVITY 51Cr; measured internal bremsstrahlung spectrum; deduced Q.

doi: 10.1103/PhysRevC.8.1370
Citations: PlumX Metrics


1973MU19      Phys.Rev. C8, 2089 (1973)

M.Mutterer

Radiative Capture of s Electrons in the Decay of 7Be

RADIOACTIVITY 7Be; measured Eγ; deduced Q-. 7Li deduced transitions.

doi: 10.1103/PhysRevC.8.2089
Citations: PlumX Metrics


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