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NSR database version of March 21, 2024.

Search: Author = J.T.Murgatroyd

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2003ME03      J.Phys.(London) G29, 697 (2003)

C.J.Metelko, M.Freer, N.Curtis, J.T.Murgatroyd, S.M.Singer, D.J.Henderson, D.J.Hofman, A.H.Wuosmaa

Resonances in 28Si populated in the 12C(20Ne, 28Si*)α reaction

NUCLEAR REACTIONS 12C(20Ne, 12C16O), E=110, 160 MeV; measured particle spectra, angular correlations. 28Si deduced resonance energies, J.

doi: 10.1088/0954-3899/29/4/307
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2001AS01      Phys.Rev. C63, 034315 (2001)

N.I.Ashwood, J.T.Murgatroyd, N.M.Clarke, M.Freer, B.R.Fulton, A.St.J.Murphy, S.P.G.Chappell, R.L.Cowin, G.K.Dillon, D.L.Watson, W.N.Catford, N.Curtis, M.Shawcross, V.Pucknell

Evidence for a Highly Deformed Band in 12C + 16O Breakup of 28Si

NUCLEAR REACTIONS 16O(16O, 12C16O), E=90, 97 MeV; measured breakup fragments energy spectra, angular correlations. 28Si deduced levels, J, π.

doi: 10.1103/PhysRevC.63.034315
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2001FR02      Phys.Rev. C63, 034301 (2001); Erratum Phys.Rev. C64, 019904 (2001)

M.Freer, J.C.Angelique, L.Axelsson, B.Benoit, U.Bergmann, W.N.Catford, S.P.G.Chappell, N.M.Clarke, N.Curtis, A.D'Arrigo, E.de Goes Brennard, O.Dorvaux, B.R.Fulton, G.Giardina, C.Gregori, S.Grevy, F.Hanappe, G.Kelly, M.Labiche, C.Le Brun, S.Leenhardt, M.Lewitowicz, K.Markenroth, F.M.Marques, J.T.Murgatroyd, T.Nilsson, A.Ninane, N.A.Orr, I.Piqueras, M.G.Saint Laurent, S.M.Singer, O.Sorlin, L.Stuttge, D.L.Watson

Helium Breakup States in 10Be and 12Be

NUCLEAR REACTIONS 1H, 12C(12Be, 26He), 12C(12Be, α6He), E=378 MeV; measured particle spectra, angular distributions. 10,12Be deduced levels, possible cluster structure. Secondary beam from 18O fragmentation.

doi: 10.1103/PhysRevC.63.034301
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2001FR03      Phys.Rev. C63, 034317 (2001)

M.Freer, J.T.Murgatroyd, S.M.Singer, N.Curtis, D.J.Henderson, D.J.Hofman, A.H.Wuosmaa

12C + 12C and 16O + 8Be Decay of 24Mg States Populated in the 12C(20Ne, 24Mg*)8Be Reaction

NUCLEAR REACTIONS 12C(20Ne, 8Be16O), (20Ne, 212C), E=110, 160 MeV; measured breakup fragments energy spectra, angular correlations. 24Mg deduced levels, J, π, configurations.

doi: 10.1103/PhysRevC.63.034317
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2001FR19      Nucl.Phys. A694, 147 (2001)

M.Freer, M.P.Nicoli, N.M.Clarke, B.R.Fulton, G.R.Kelly, J.T.Murgatroyd, S.M.Singer

The 12C(16O, 12C12C)α Reaction at Ebeam = 75 MeV

NUCLEAR REACTIONS 12C(16O, 212C), E=75 MeV; measured particle spectra, angular correlations. 28Si deduced resonance energy, spin.

doi: 10.1016/S0375-9474(01)00984-8
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2001SH08      Phys.Rev. C63, 034311 (2001)

M.Shawcross, N.Curtis, W.N.Catford, N.M.Clarke, B.R.Fulton, S.J.Hall, J.T.Murgatroyd, S.P.G.Chappell, R.L.Cowin, G.Dillon, D.L.Watson

Angular Correlations from the 12C + 16O Breakup of 28Si and 12C + 12C Breakup of 24Mg

NUCLEAR REACTIONS 12C(24Mg, 212C), (24Mg, 12C16O), E=170 MeV; measured breakup fragments energy spectra, angular correlations. 24Mg, 28Si deduced levels, J, π.

doi: 10.1103/PhysRevC.63.034311
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2000CU02      Phys.Rev. C61, 064606 (2000)

N.Curtis, M.Shawcross, W.N.Catford, B.R.Fulton, N.M.Clarke, S.J.Hall, J.T.Murgatroyd, S.P.G.Chappell, R.L.Cowin, G.Dillon, D.L.Watson

Target Dependence in the Resonant 12C + 12C Breakup of Excited States in 24Mg

NUCLEAR REACTIONS 7Li, 9Be, 12C, 16O(24Mg, 212C), E=170 MeV; measured excitation energy spectra, (12C)(12C)-coin, σ(E, θ); deduced target dependence.

doi: 10.1103/PhysRevC.61.064606
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2000CU03      Phys.Rev. C62, 034603 (2000)

N.Curtis, M.Shawcross, W.N.Catford, B.R.Fulton, N.M.Clarke, S.J.Hall, J.T.Murgatroyd, S.P.G.Chappell, R.L.Cowin, G.Dillon, D.L.Watson

Reaction Mechanism Populating 12C + 16O Breakup States in 28Si

NUCLEAR REACTIONS 7Li, 9Be, 12C(24Mg, 12C16O), E=170 MeV; measured particle spectra, excitation energy spectra; deduced reaction mechanism features. 28Si deduced excited states population.

doi: 10.1103/PhysRevC.62.034603
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1999FR04      Phys.Rev.Lett. 82, 1383 (1999)

M.Freer, J.C.Angelique, L.Axelsson, B.Benoit, U.Bergmann, W.N.Catford, S.P.G.Chappell, N.M.Clarke, N.Curtis, A.D'Arrigo, E.de Goes Brennand, O.Dorvaux, B.R.Fulton, G.Giardina, C.Gregori, S.Grevy, F.Hanappe, G.Kelly, M.Labiche, C.Le Brun, S.Leenhardt, M.Lewitowicz, K.Markenroth, F.M.Marques, M.Motta, J.T.Murgatroyd, T.Nilsson, A.Ninane, N.A.Orr, I.Piqueras, M.G.Saint Laurent, S.M.Singer, O.Sorlin, L.Stuttge, D.L.Watson

Exotic Molecular States in 12Be

NUCLEAR REACTIONS 1H, 12C(12Be, 26He), (12Be, α8He), E=378 MeV; measured Q-value spectra; deduced projectile breakup mechanism features. 12Be deduced deformed exotic cluster structure.

doi: 10.1103/PhysRevLett.82.1383
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1999GO01      Yad.Fiz. 62, No 2, 202 (1999); Phys.Atomic Nuclei 62, 166 (1999)

V.Z.Goldberg, M.S.Golovkov, G.V.Rogatchev, S.P.Barrow, R.W.Zurmuhle, Z.Liu, D.R.Benton, Y.Miao, C.Lee, N.G.Wimer, J.T.Murgatroyd, X.Li

Study of the Reaction Mechanism for 12C(14N, 6Li) by Angular-Correlation Measurement

NUCLEAR REACTIONS 12C(14N, 6Li), E=48 MeV; measured σ(E), (Li)α(θ) following residual decay; deduced compound nucleus formation contribution, other reaction mechanism features.


1998FR03      Phys.Rev. C57, 1277 (1998)

M.Freer, N.M.Clarke, B.R.Fulton, J.T.Murgatroyd, A.St.J.Murphy, S.P.G.Chappell, R.L.Cowin, G.Dillon, D.L.Watson, W.N.Catford, N.Curtis, M.Shawcross, V.F.E.Pucknell

12C + 12C and 16O + 8Be Decay of 24Mg States Excited in the 12C(16O, 24Mg)α Reaction

NUCLEAR REACTIONS 12C(16O, 212C), (16O, 8Be16O), E=75, 85, 115 MeV; measured fragment spectra, angular correlations; deduced excitation energy spectra. 24Mg deduced levels, possible J, decay modes.

doi: 10.1103/PhysRevC.57.1277
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1998MU16      Phys.Rev. C58, 1569 (1998)

J.T.Murgatroyd, J.S.Pople, N.M.Clarke, B.R.Fulton, M.J.Leddy, W.N.Catford, S.P.Fox, G.J.Gyapong, C.D.Jones, D.L.Watson, W.D.M.Rae, Y.Chan, R.G.Stokstad, S.J.Bennett

16O + 8Be Breakup of 24Mg Via the 12C(20Ne, 16O8Be)8Be and 12C(24Mg, 16O8Be)12C Reactions

NUCLEAR REACTIONS 12C(20Ne, 8Be16O), E=160 MeV; 12C(24Mg, 8Be16O), E=170 MeV; measured (Be)(O)-coin, angular correlations, excitation energy spectra. 24Mg deduced levels E, J. Comparison with 12C + 12C breakup channel.

doi: 10.1103/PhysRevC.58.1569
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1997BA16      Phys.Rev. C55, 1420 (1997); Erratum Phys.Rev. C56, 2336 (1997)

J.Barrette, R.Bellwied, S.Bennett, P.Braun-Munzinger, W.C.Chang, W.E.Cleland, M.Clemen, J.Cole, T.M.Cormier, G.David, J.Dee, O.Dietzsch, M.Drigert, J.R.Hall, T.K.Hemmick, N.Herrmann, B.Hong, Y.Kwon, R.Lacasse, A.Lukaszew, Q.Li, T.W.Ludlam, S.K.Mark, R.Matheus, S.McCorkle, J.T.Murgatroyd, E.O'Brien, S.Panitkin, T.Piazza, C.Pruneau, M.N.Rao, M.Rosati, N.C.da Silva, S.Sedykh, U.Sonnadara, J.Stachel, E.M.Takagui, S.Voloshin, G.Wang, J.P.Wessels, C.L.Woody, N.Xu, Y.Zhang, C.Zou, and the E877 Collaboration

Energy and Charged Particle Flow in 10.8A GeV/c Au + Au Collisions

NUCLEAR REACTIONS 197Au(197Au, X), E=10.8 GeV/c/nucleon; measured azimuthal distributions of transverse energy, charged particle multiplicity, Fourier components, sideward flow, squeeze-out, relativistic collisions; deduced nucleon, pion flow. Experiment E877 at BNL AGS.

doi: 10.1103/PhysRevC.55.1420
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1997FU12      Nuovo Cim. 110A, 1015 (1997)

B.R.Fulton, M.Freer, J.T.Murgatroyd

Cluster States in 24Mg and 28Si

NUCLEAR REACTIONS 12C(16O, α), E=115 MeV; 16O(16O, α), E=90 MeV; measured excitation energy spectra. 24Mg, 28Si deduced cluster states breakup features.

doi: 10.1007/BF03035939
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1997WI16      Phys.Rev. C56, 1954 (1997)

N.G.Wimer, S.P.Barrow, Y.Miao, C.Lee, J.T.Murgatroyd, X.D.Li, R.Antonov, R.W.Zurmuhle

Gross Structure Resonances in the Mutual Excitation of the 02+ State of 16O

NUCLEAR REACTIONS 16O(16O, 16O'), E(cm)=30-43.5 MeV; measured σ(E, θ) for single, mutual excitations of 0+2 state; deduced exit channel spin, coupled channel contributions.

doi: 10.1103/PhysRevC.56.1954
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1996MI01      Phys.Rev. C53, 815 (1996)

Y.Miao, R.W.Zurmuhle, S.P.Barrow, N.G.Wimer, J.T.Murgatroyd, C.Lee, Z.Liu

Resonant Structures in the 20Ne + 16O System

NUCLEAR REACTIONS 20Ne(16O, 16O), (16O, 12C), E=29.5-75 MeV; measured σ(θ) vs E; deduced optical model parameters. 36Ar deduced resonances, J, Γ, exit channel branching ratios.

doi: 10.1103/PhysRevC.53.815
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1996MU03      Phys.Rev. C53, 1963 (1996)

A.St.J.Murphy, R.A.Le Marechal, S.J.Bennett, N.M.Clarke, N.Curtis, M.Freer, B.R.Fulton, S.J.Hall, M.J.Leddy, J.T.Murgatroyd, J.S.Pople, G.Tungate, R.P.Ward, W.D.M.Rae, P.M.Simmons, W.N.Catford, G.J.Gyapong, S.M.Singer, S.P.G.Chappell, S.P.Fox, C.D.Jones, P.Lee, D.L.Watson

Search for 16O + 16O + 16O Structure in 48Cr

NUCLEAR REACTIONS 12C, 24Mg(24Mg, 216O), E=150, 170 MeV; measured Eγ, Iγ, σ(θ1, θ2).

doi: 10.1103/PhysRevC.53.1963
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1995BA08      Phys.Rev. C51, 1961 (1995)

S.P.Barrow, R.W.Zurmuhle, J.T.Murgatroyd, N.G.Wimer, Y.Miao, K.R.Pohl, A.H.Wuosmaa, R.R.Betts, M.Freer, B.Glagola

Excitation Functions of the 20Ne + 20Ne System

NUCLEAR REACTIONS 20Ne(20Ne, 20Ne), (20Ne, 20Ne'), (20Ne, X), E(cm)=30.6-37.4 MeV; measured σ(θ) vs E; deduced quasimolecular resonances excitation related features.

doi: 10.1103/PhysRevC.51.1961
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1995BA39      Phys.Rev. C51, 3309 (1995)

J.Barrette, R.Bellwied, S.Bennett, P.Braun-Munzinger, W.E.Cleland, M.Clemen, J.D.Cole, T.M.Cormier, G.David, J.Dee, O.Dietzsch, M.W.Drigert, J.R.Hall, T.K.Hemmick, N.Herrmann, B.Hong, Y.Kwon, R.Lacasse, A.Lukaszew, Q.Li, T.W.Ludlam, S.K.Mark, S.McCorkle, R.Matheus, J.T.Murgatroyd, E.O'Brien, S.Panitkin, T.Piazza, C.Pruneau, M.N.Rao, M.Rosati, N.C.daSilva, S.Sedykh, U.Sonnadara, J.Stachel, N.Starinsky, E.M.Takagui, S.Voloshin, G.Wang, J.P.Wessels, C.L.Woody, N.Xu, Y.Zhang, C.Zou, and the E877 Collaboration

Charged-Particle Pseudorapidity Distributions in Au + Al, Cu, Au, and U Collisions at 10.8A GeV/c

NUCLEAR REACTIONS 27Al, Cu, 197Au, U(197Au, X), E at 10.8 GeV/c/nucleon; measured charged particle pseudorapidity distributions as a function of centrality; deduced total energy per charged particle as a function of pseudorapidity and centrality. Compared with FRITIOF and RQMD predictions.

doi: 10.1103/PhysRevC.51.3309
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1995BA89      Phys.Rev. C52, 3088 (1995)

S.P.Barrow, R.W.Zurmuhle, D.R.Benton, Y.Miao, Q.Li, P.H.Kutt, Z.Liu, C.Lee, N.G.Wimer, J.T.Murgatroyd

Statistical Analysis of Correlated Resonance Phenomena in Two Systems: 28Si + 20Ne and 24Mg + 20Ne

NUCLEAR REACTIONS, ICPND 20Ne(28Si, 20Ne), (28Si, 24Mg), (28Si, 16O), E=87.2-128.7; 20Ne(24Mg, 20Ne), (24Mg, 16O), E=70.8-119.75 MeV; measured σ(E), σ(θ); analyzed correlated resonance phenomena; deduced evidence of shape isomers. Comparison with Hartree-Fock calculations.

doi: 10.1103/PhysRevC.52.3088
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1995JA06      Phys.Rev. C51, 2606 (1995)

N.S.Jarvis, D.L.Watson, G.J.Gyapong, C.D.Jones, S.J.Bennett, M.Freer, B.R.Fulton, O.Karban, J.T.Murgatroyd, G.Tungate, W.D.M.Rae, A.E.Smith

Breakup Studies with 23Na

NUCLEAR REACTIONS 12C(23Na, 11B12C), E=176 MeV; 12C(23Na, 212C), E=156 MeV; measured fragment E(total), spectra. 23Na, 24Mg deduced breakup state energies, width upper limits, fragmentation characteristics.

doi: 10.1103/PhysRevC.51.2606
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1995LE22      Nucl.Phys. A589, 363 (1995)

M.J.Leddy, S.J.Bennett, N.M.Clarke, M.Freer, B.R.Fulton, J.T.Murgatroyd, G.J.Gyapong, C.D.Jones, D.L.Watson, W.D.M.Rae, A.E.Smith, W.N.Catford

Comparison of Resonances Observed in the 12C(24Mg, 12C12C)12C and 12C(20Ne, 12C12C)8Be Reactions

NUCLEAR REACTIONS 12C(24Mg, 212C), E=170 MeV; measured (fragment)(fragment)-coin. 24Mg deduced excitation energies, J.

doi: 10.1016/0375-9474(95)00053-4
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1995MU03      Phys.Rev. C51, 2230 (1995)

J.T.Murgatroyd, S.J.Bennett, B.R.Fulton, J.S.Pople, N.S.Jarvis, D.L.Watson, W.D.M.Rae, Y.Chan, D.DiGregorio, J.Scarpaci, J.Suro Perez, R.G.Stokstad

Evidence for 16O + 12C Cluster Structure in 28Si

NUCLEAR REACTIONS 12C(20Ne, 12C16O), E=160 MeV; measured (12C)(16O)-coin total energy spectra. 28Si levels deduced 12C + 16O cluster structure, shape features.

doi: 10.1103/PhysRevC.51.2230
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1995MU04      Nucl.Phys. A587, 367 (1995)

J.T.Murgatroyd, S.J.Bennett, N.M.Clarke, B.R.Fulton, G.J.Gyapong, C.D.Jones, D.L.Watson, T.M.Cormier, H.Dejbakhsh, A.Szanto de Toledo, N.Carlin

Termination of the 12C-12C Cluster States Revealed in the 12C)(20Ne, 12C12C)8Be Breakup Reaction

NUCLEAR REACTIONS 12C(20Ne, 212C), E=300 MeV; measued (12C)(12C)-coin. 24Mg deduced energies of breakup states.

doi: 10.1016/0375-9474(95)00003-J
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1994FU01      J.Phys.(London) G20, 151 (1994)

B.R.Fulton, S.J.Bennett, J.T.Murgatroyd, N.S.Jarvis, D.L.Watson, W.D.M.Rae, Y.Chan, D.DiGregorio, J.Scarpaci, J.Suro Perez, R.G.Stokstad

Resonances in 24Mg Revealed in the 12C(20Ne, 12C12C)8Be Reaction

NUCLEAR REACTIONS 12C(20Ne, 212C), E=160 MeV; measured coincident 12C nuclei total energy spectra. 24Mg deduced excited state population, breakup mechanism.

doi: 10.1088/0954-3899/20/1/015
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1994GY01      Nucl.Phys. A579, 207 (1994)

G.J.Gyapong, D.L.Watson, W.N.Catford, N.M.Clarke, S.J.Bennett, M.Freer, B.R.Fulton, C.D.Jones, M.Leddy, J.T.Murgatroyd, W.D.M.Rae, P.Simmons

Reaction Mechanism for the Symmetric Breakup of 24Mg following an Interaction with 12C

NUCLEAR REACTIONS 12C(24Mg, 212C), E(cm)=43.3-60 MeV; measured symmetric breakup yield; deduced reaction mechanism. 24Mg deduced cluster states characteristics.

doi: 10.1016/0375-9474(94)90802-8
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1994PO19      Z.Phys. A349, 349 (1994)

J.S.Pople, N.M.Clarke, B.R.Fulton, M.J.Leddy, J.T.Murgatroyd, Y.Chan, R.G.Stokstad, W.D.M.Rae, W.N.Catford, S.P.Fox, G.J.Gyapong, D.L.Watson, S.J.Bennett, and the Charissa Collaboration

The Breakup of 24Mg into 16O and 8Be

NUCLEAR REACTIONS 12C(24Mg, 8Be16O), E=170 MeV; 12C(20Ne, 8Be16O), E=160 MeV; measured breakup spectra; deduced reaction mechanism. 24Mg deduced breakup level configuration, shape features.


1994ZU03      Phys.Rev. C49, 2549 (1994)

R.W.Zurmuhle, Z.Liu, D.R.Benton, S.Barrow, N.Wimer, Y.Miao, C.Lee, J.T.Murgatroyd, X.Li, V.Z.Goldberg, M.S.Golovkov

Observation of 12C Cluster Transfer by Angular Correlation Measurements

NUCLEAR REACTIONS, ICPND 12C(14N, d), E=30-45 MeV; measured dα(θ), σ(E), σ(θd); deduced reaction mechanism.

doi: 10.1103/PhysRevC.49.2549
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetT0117.


1993BE56      Nucl.Instrum.Methods Phys.Res. A332, 476 (1993)

S.J.Bennett, N.M.Clarke, M.Freer, B.R.Fulton, S.J.Hall, O.Karban, J.T.Murgatroyd, G.Tungate, G.J.Gyapong, N.S.Jarvis, D.L.Watson, W.D.M.Rae, A.E.Smith, J.S.Lilley, P.J.Woods, R.D.Page, and the Charissa Collaboration

Application of Inverse Kinematics to 1H + 23Na → 12C + 12C using a Thick Target

NUCLEAR REACTIONS 1H(23Na, 12C), E=180 MeV; measured 12C-spectra, σ(θ) vs 24Mg excitation. Kinematically complete experiment.

doi: 10.1016/0168-9002(93)90303-Y
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1991BE27      Nucl.Phys. A534, 445 (1991)

S.J.Bennett, M.Freer, B.R.Fulton, J.T.Murgatroyd, P.J.Woods, S.C.Allcock, W.D.M.Rae, A.E.Smith, J.S.Lilley, R.R.Betts

Symmetric and Near-Symmetric Fission of 24Mg, 28Si and 32S

NUCLEAR REACTIONS 12C(28Si, F), (28Si, X), (32S, F), (32S, X), E=200 MeV; 12C(24Mg, F), (24Mg, X), E=180 MeV; measured fission, reaction (fragment)(fragment)-coin; deduced reaction mechanism. 24Mg, 28Si, 32S deduced fission characteristics.

doi: 10.1016/0375-9474(91)90511-4
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1991FU03      J.Phys.(London) G17, 555 (1991)

B.R.Fulton, S.J.Bennett, M.Freer, J.T.Murgatroyd, S.C.Allcock, W.D.M.Rae, A.E.Smith, R.R.Betts, B.B.Back, S.Sanders, F.Videbaek

Search for Large Cluster Breakup of 40Ca

NUCLEAR REACTIONS 12C(40Ca, 12CX), E=300 MeV; measured total energy spectra following projectile breakup. 12C(24Mg, 212C), E not given; analyzed total energy spectra following projectile breakup; deduced no large cluster 40Ca breakup evidence.

doi: 10.1088/0954-3899/17/4/014
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1991FU09      Phys.Lett. 267B, 325 (1991)

B.R.Fulton, S.J.Bennett, M.Freer, J.T.Murgatroyd, G.J.Gyapong, N.S.Jarvis, C.D.Jones, D.L.Watson, J.D.Brown, W.D.M.Rae, A.E.Smith, J.S.Lilley

Spin Measurement for Symmetric Fission States of 24Mg. A New Angle on the 12C + 12C Interaction

NUCLEAR REACTIONS 12C(24Mg, 212C), E=170 MeV; measured (12C)(12C)(θ). 24Mg deduced symmetric fission decay states J, deformation features. Cranked cluster model, Nilsson-Strutinsky calculations.

doi: 10.1016/0370-2693(91)90940-R
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1991GY01      Phys.Rev. C44, 520 (1991)

G.J.Gyapong, N.S.Jarvis, D.L.Watson, S.J.Bennett, M.Freer, B.R.Fulton, J.T.Murgatroyd, R.Hunt, W.D.M.Rae, A.E.Smith

Near-Symmetric Breakup of 25Mg

NUCLEAR REACTIONS 12C(25Mg, X), E=180 MeV; measured (fragment)(fragment)-coin, X=12C, 13C following projectile breakup. 24,25Mg deduced symmetric fissioning states energy.

doi: 10.1103/PhysRevC.44.520
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