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NSR database version of April 24, 2024.

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2023PA26      Can.J.Phys. 101, 484 (2023)

D.Panchenko, P.Beiersdorfer, N.Hell, G.V.Brown, R.L.Kelley, C.A.Kilbourne, F.S.Porter

Measurements of the L-shell X-ray emission of fluorine-like europium

ATOMIC PHYSICS Eu; measured X-rays; deduced one two-electron, one-photon core changing transition and one electric quadrupole transition. Comparison with atomic data from the flexible atomic code. The EBIT-I electron beam ion trap at Livermore.

doi: 10.1139/cjp-2022-0041
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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
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2765.

2019BU01      Phys.Rev. C 99, 015501 (2019)

D.P.Burdette, M.Brodeur, T.Ahn, J.Allen, D.W.Bardayan, F.D.Becchetti, D.Blankstein, G.Brown, B.Frentz, M.R.Hall, S.King, J.J.Kolata, J.Long, K.T.Macon, A.Nelson, P.D.O'Malley, C.Seymour, M.Skulski, S.Y.Strauss, A.A.Valverde

Resolving the discrepancy in the half-life of 20F

RADIOACTIVITY 20F(β-)[from 2H(19F, p), E=46.0 MeV followed by separation of the radioactive beam using TwinSol]; measured T1/2 of 20F g.s. from β-decay curves using plastic scintillator for β- detection at the University of Notre Dame Nuclear Science Laboratory; deduced recommended average half-life by considering a selection from compiled previous experimental values.

doi: 10.1103/PhysRevC.99.015501
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Data from this article have been entered in the XUNDL database. For more information, click here.

2018VA04      Phys.Rev. C 97, 035503 (2018)

A.A.Valverde, M.Brodeur, T.Ahn, J.Allen, D.W.Bardayan, F.D.Becchetti, D.Blankstein, G.Brown, D.P.Burdette, B.Frentz, G.Gilardy, M.R.Hall, S.King, J.J.Kolata, J.Long, K.T.Macon, A.Nelson, P.D.O'Malley, M.Skulski, S.Y.Strauss, B.Vande Kolk

Precision half-life measurement of 11C: The most precise mirror transition Ft value

RADIOACTIVITY 11C(β+), (EC)[from 2H(10B, n), E=32.5 MeV at the Nuclear Science Laboratory of University of Notre Dame, followed by mass separation of 11C ions by TwinSol mass separator and implanted in a thick tantalum foil in NSL β-counting station]; measured Eβ, Iβ, half-life of 11C decay; deduced Ftmirror, Gamow-Teller-to-Fermi mixing ratio ρ, β asymmetry parameter Ab, β-neutrino angular correlation parameter aβν, neutrino asymmetry parameter Bn. Comparison with literature values.

NUCLEAR REACTIONS 2H(10B, n)4He/9Be/10B/11C, E=32.5 MeV; measured yields for ions using TwinSol mass separator at University of Notre Dame.

doi: 10.1103/PhysRevC.97.035503
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Data from this article have been entered in the XUNDL database. For more information, click here.

2009SI09      Phys.Rev. C 79, 054004 (2009)

L.-W.Siu, J.W.Holt, T.T.S.Kuo, G.E.Brown

Low-momentum NN interactions and all-order summation of ring diagrams of symmetric nuclear matter

doi: 10.1103/PhysRevC.79.054004
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2008HO01      Phys.Rev.Lett. 100, 062501 (2008)

J.W.Holt, G.E.Brown, T.T.S.Kuo, J.D.Holt, R.Machleidt

Shell Model Description of the 14C Dating β Decay with Brown-Rho-Scaled NN Interactions

RADIOACTIVITY 14C(β-); calculated Gamow-Teller matrix elements and β-decay half life using the shell model and medium modified Bonn-B potential.

doi: 10.1103/PhysRevLett.100.062501
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2007BE16      Phys.Rev.Lett. 98, 142501 (2007)

B.R.Beck, J.A.Becker, P.Beiersdorfer, G.V.Brown, K.J.Moody, J.B.Wilhelmy, F.S.Porter, C.A.Kilbourne, R.L.Kelley

Energy Splitting of the Ground-State Doublet in the Nucleus 229Th

RADIOACTIVITY 233U(α); measured Eγ, Iγ. 229Th deduced excited state energy.

doi: 10.1103/PhysRevLett.98.142501
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Data from this article have been entered in the XUNDL database. For more information, click here.

2007BR03      Phys.Rep. 439, 161 (2007)

G.E.Brown, J.W.Holt, C.-H.Lee, M.Rho

Vector manifestation and matter formed in relativistic heavy-ion processes

doi: 10.1016/j.physrep.2006.12.002
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2007HO06      Nucl.Phys. A785, 322 (2007)

J.W.Holt, G.E.Brown, Jason D.Holt, T.T.S.Kuo

Nuclear matter with Brown-Rho-scaled Fermi liquid interaction

doi: 10.1016/j.nuclphysa.2006.12.099
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2006BR02      Phys.Rev.Lett. 96, 062303 (2006)

G.E.Brown, C.-H.Lee, H.-J.Park, M.Rho

Strangeness Condensation by Expanding about the Fixed Point of the Harada-Yamawaki Vector Manifestation

doi: 10.1103/PhysRevLett.96.062303
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2006BR08      Phys.Rev.Lett. 96, 132301 (2006)

G.E.Brown, B.A.Gelman, M.Rho

Matter Formed at the BNL Relativistic Heavy Ion Collider

doi: 10.1103/PhysRevLett.96.132301
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2006BR16      Phys.Rev. C 74, 024906 (2006)

G.E.Brown, C.-H.Lee, M.Rho

Vector manifestation of hidden local symmetry, hadronic freedom, and the STAR ρ0- ratio

NUCLEAR REACTIONS 197Au(197Au, X), E(cm)=200 GeV/nucleon; analyzed meson yield ratio; deduced hadronic freedom. Vector manifestation fixed-point scenario.

doi: 10.1103/PhysRevC.74.024906
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2006PA45      Nucl.Phys. A774, 889 (2006)

H.-J.Park, C.-H.Lee, G.E.Brown, M.Rho

The Problem of Mass: Mesonic Bound States Above Tc

NUCLEAR REACTIONS Au(Au, X), E(cm)=200 GeV/nucleon; calculated neutral ρ-meson to negative pion ratio. Bielefeld lattice gauge simulation. Comparison with data.

doi: 10.1016/j.nuclphysa.2006.06.159
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2006SC03      Phys.Rev. C 73, 011001 (2006)

B.-J.Schaefer, M.Wagner, J.Wambach, T.T.S.Kuo, G.E.Brown

Low-momentum hyperon-nucleon interactions

doi: 10.1103/PhysRevC.73.011001
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2006WA27      Phys.Rev. C 74, 054003 (2006)

M.Wagner, B.-J.Schaefer, J.Wambach, T.T.S.Kuo, G.E.Brown

Convergence of multi-channel effective interactions

doi: 10.1103/PhysRevC.74.054003
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2005BR01      Nucl.Phys. A747, 530 (2005)

G.E.Brown, C.-H.Lee, M.Rho

Chemical equilibration in relativistic heavy ion collisions

doi: 10.1016/j.nuclphysa.2004.09.108
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2005BR37      Nucl.Phys. A762, 3 (2005)


Hans Bethe's Nuclear Physics

doi: 10.1016/j.nuclphysa.2005.07.007
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2005HO29      Phys.Rev. C 72, 041304 (2005)

J.D.Holt, J.W.Holt, T.T.S.Kuo, G.E.Brown, S.K.Bogner

Low momentum shell model effective interactions with all-order core polarizations

NUCLEAR STRUCTURE 18O, 18F; calculated levels, J, π. All-order summation of core-polarization diagrams.

doi: 10.1103/PhysRevC.72.041304
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2005PA62      Nucl.Phys. A763, 197 (2005)

H.-J.Park, C.-H.Lee, G.E.Brown

The problem of mass: Mesonic bound states above Tc

doi: 10.1016/j.nuclphysa.2005.08.016
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2004BR07      Phys.Rep. 391, 353 (2004)

G.E.Brown, L.Grandchamp, C.-H.Lee, M.Rho

Nature of the chiral restoration transition in QCD

doi: 10.1016/j.physrep.2003.10.009
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2004BR22      Phys.Rep. 396, 1 (2004)

G.E.Brown, M.Rho

Double decimation and sliding vacua in the nuclear many-body system

doi: 10.1016/j.physrep.2004.02.002
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2004BR32      Nucl.Phys. A740, 171 (2004)

G.E.Brown, C.-H.Lee, M.Rho, E.Shuryak

The (q-bar)q bound states and instanton molecules at T ≥ Tc

doi: 10.1016/j.nuclphysa.2004.04.116
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2004BR37      J.Phys.(London) G30, S1275 (2004)

G.E.Brown, C.-H.Lee, M.Rho, E.Shuryak

The instanton molecule liquid and 'sticky molasses' above Tc

doi: 10.1088/0954-3899/30/8/107
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2004BR39      Phys.Rep. 398, 301 (2004)

G.E.Brown, M.Rho

Matching the QCD and hadron sectors and medium-dependent meson masses; hadronization in relativistic heavy ion collisions

doi: 10.1016/j.physrep.2004.05.006
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2004GR14      Phys.Rev.Lett. 92, 212301 (2004)

L.Grandchamp, R.Rapp, G.E.Brown

In-Medium Effects on Charmonium Production in Heavy-Ion Collisions

NUCLEAR REACTIONS Pb(Pb, X), 197Au(197Au, X), E=high; calculated J/ψ yields, in-medium effects.

doi: 10.1103/PhysRevLett.92.212301
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2004GR23      J.Phys.(London) G30, S1355 (2004)

L.Grandchamp, R.Rapp, G.E.Brown

Medium modifications of charm and charmonium in high-energy heavy-ion collisions

NUCLEAR REACTIONS Pb(Pb, X), E=158 GeV/nucleon; In(In, X), E=170 GeV/nucleon; 197Au(197Au, X), E(cm)=200 GeV/nucleon; calculated charmonium yield ratios, medium modification effects. Comparison with data.

doi: 10.1088/0954-3899/30/8/126
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2004HO05      Nucl.Phys. A733, 153 (2004)

J.D.Holt, T.T.Kuo, G.E.Brown, S.K.Bogner

Counter terms for low momentum nucleon-nucleon interactions

doi: 10.1016/j.nuclphysa.2003.12.004
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2004HO07      Phys.Rev. C 69, 034329 (2004)

J.D.Holt, T.T.S.Kuo, G.E.Brown

Family of Hermitian low-momentum nucleon interactions with phase shift equivalence

NUCLEAR STRUCTURE 2H; calculated wave functions, phase shifts. Hermitian low-momentum nucleon interactions.

doi: 10.1103/PhysRevC.69.034329
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2003SC01      Nucl.Phys. A713, 191 (2003)

A.Schwenk, B.Friman, G.E.Brown

Renormalization group approach to neutron matter: quasiparticle interactions, superfluid gaps and the equation of the state

doi: 10.1016/S0375-9474(02)01290-3
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2003SH09      Nucl.Phys. A717, 322 (2003)

E.V.Shuryak, G.E.Brown

Matter-induced modification of resonances at RHIC freezeout

NUCLEAR REACTIONS 1H(p, X), 197Au(197Au, X), E=high; analyzed resonance production data, matter-induced modification of masses, widths, related features.

doi: 10.1016/S0375-9474(03)00672-9
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2002BR09      Nucl.Phys. A698, 483c (2002)

G.E.Brown, M.Rho, C.Song

Broad Band Equilibration of Strangeness

NUCLEAR REACTIONS Ni(Ni, X), E ≈ 1.8 GeV/nucleon; analyzed particle yield ratios; deduced kaon production equilibration features, in-medium effects.

doi: 10.1016/S0375-9474(01)01409-9
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2002BR18      Phys.Rep. 363, 85 (2002)

G.E.Brown, M.Rho

On the Manifestation of Chiral Symmetry in Nuclei and Dense Nuclear Matter

doi: 10.1016/S0370-1573(01)00084-9
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2002SC19      Nucl.Phys. A703, 745 (2002)

A.Schwenk, G.E.Brown, B.Friman

Low-Momentum Nucleon-Nucleon Interaction and Fermi Liquid Theory

doi: 10.1016/S0375-9474(01)01673-6
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2001BR26      Nucl.Phys. A690, 184c (2001)

G.E.Brown, M.Rho, C.Song

Strangeness Equilibration at GSI Energies

doi: 10.1016/S0375-9474(01)00942-3
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2001RI03      Nucl.Phys. A679, 577 (2001)

D.O.Riska, G.E.Brown

Nucleon Resonance Transition Couplings to Vector Mesons

doi: 10.1016/S0375-9474(00)00362-6
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2000KI19      Phys.Rev. C62, 015202 (2000)

Y.Kim, R.Rapp, G.E.Brown, M.Rho

Schematic Model for ρ-a1 Mixing at Finite Density and In-Medium Effective Lagrangian

doi: 10.1103/PhysRevC.62.015202
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1999LI53      Nucl.Phys. (Supplement) A654, 523c (1999)

G.Q.Li, C.-H.Lee, G.E.Brown

Kaon Production in Heavy-Ion Collisions and Kaon Condensation in Neutron Stars

NUCLEAR REACTIONS Ni(Ni, X), E=high; analyzed kaon production data; deduced in-medium properties. Implications for neutron stars discussed.

doi: 10.1016/S0375-9474(00)88492-4
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1999RA06      Phys.Rev.Lett. 82, 1827 (1999)

R.Rapp, R.Machleidt, J.W.Durso, G.E.Brown

Nuclear Saturation with In-Medium Meson Exchange Interactions

doi: 10.1103/PhysRevLett.82.1827
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1999RI09      Nucl.Phys. A653, 251 (1999)

D.O.Riska, G.E.Brown

Two-Pion Exchange Interaction between Constituent Quarks

doi: 10.1016/S0375-9474(99)00260-2
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1998BR24      Nucl.Phys. A639, 455c (1998)

G.E.Brown, C.-H.Lee, R.Rapp

Stange Particles in Dense Matter and Kaon Condensates

doi: 10.1016/S0375-9474(98)00312-1
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1998BR26      Acta Phys.Pol. B29, 2309 (1998)

G.E.Brown, G.Q.Li, R.Rapp, M.Rho, J.Wambach

Medium Dependence of the Vector-Meson Mass: Dynamical and/or Brown-Rho Scaling ?

NUCLEAR REACTIONS 197Au(Pb, X), E=158 GeV/nucleon; calculated dilepton mass spectra; deduced dilepton production mechanism features. Dynamical and Brown-Rho scaling compared.

1998HA34      Phys.Rev. C58, 365 (1998)

M.-A.Halasz, J.V.Steele, G.-Q.Li, G.E.Brown

Photon Rates for Heavy-Ion Collisions from Hidden Local Symmetry

doi: 10.1103/PhysRevC.58.365
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1998LE14      Phys.Rev. C57, 3488 (1998)

C.-H.Lee, T.T.S.Kuo, G.Q.Li, G.E.Brown

Nuclear Symmetry Energy

doi: 10.1103/PhysRevC.57.3488
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1998LI10      Nucl.Phys. A630, 563c (1998)

G.Q.Li, G.E.Brown, C.M.Ko

Electromagnetic Probes of Dense Matter in Heavy-Ion Collisions

NUCLEAR REACTIONS Be, 197Au, W(p, X), W, 197Au(S, X), 197Au(Pb, X), E=high; analyzed dilepton spectra; deduced dilepton production features.

doi: 10.1016/S0375-9474(97)00795-1
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1998LI12      Nucl.Phys. A632, 153 (1998)

G.Q.Li, G.E.Brown

Photon Production in Heavy-Ion Collisions at SPS Energies

NUCLEAR REACTIONS 197Au(S, X), E=200 GeV/nucleon; calculated single photon spectra; deduced photon production mechanisms. Transport model. Comparisons with data.

doi: 10.1016/S0375-9474(97)00808-7
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1998LI23      Nucl.Phys. A636, 487 (1998)

G.Q.Li, G.E.Brown

K+ Versus Λ Flow in Relativistic Heavy-Ion Collisions

NUCLEAR REACTIONS Ni(Ni, X), Ru(Ru, X), 197Au(197Au, X), E ≈ 2 GeV/nucleon; analyzed K+, Λ flow, related features. Relativistic transport model.

doi: 10.1016/S0375-9474(98)00206-1
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1998LI30      Phys.Rev.Lett. 81, 2177 (1998)

G.Q.Li, G.E.Brown, C.-H.Lee

Li, Brown, and Lee Reply: Comment on 'Kaon production in heavy-ion collisions and maximum mass of neutron stars '

doi: 10.1103/PhysRevLett.81.2177
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1998LI35      Phys.Rev. C58, 1698 (1998)

G.Q.Li, G.E.Brown

K-/K+ Ratios in Relativistic Heavy-Ion Collisions

NUCLEAR REACTIONS Ni(Ni, X), Ru(Ru, X), 197Au(197Au, X), E=1-2 GeV/nucleon; analyzed K-/K+ ratios vs centrality, transverse mass, rapidity; deduced in-medium properties. Relativistic transport model.

doi: 10.1103/PhysRevC.58.1698
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1997LE28      Phys.Lett. 412B, 235 (1997)

C.-H.Lee, T.T.S.Kuo, G.Q.Li, G.E.Brown

Momentum Dependence of Single Particle Potential in Dirac Brueckner Approach

doi: 10.1016/S0370-2693(97)01058-7
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1997LI35      Nucl.Phys. A625, 372 (1997)

G.Q.Li, C.-H.Lee, G.E.Brown

Kaons in Dense Matter, Kaon Production in Heavy-Ion Collisions, and Kaon Condensation in Neutron Stars

NUCLEAR REACTIONS Ni(Ni, X), E=1-2 GeV/nucleon; analyzed proton, pion, kaon rapidity, transverse mass distributions.

doi: 10.1016/S0375-9474(97)00489-2
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1997LI37      Phys.Rev.Lett. 79, 5214 (1997)

G.Q.Li, C.-H.Lee, G.E.Brown

Kaon Production in Heavy-Ion Collisions and Maximum Mass of Neutron Stars

NUCLEAR REACTIONS Ni(Ni, X), E=1, 1.8 GeV/nucleon; analyzed kaon spectra; deduced K- effective mass vs nuclear matter density, implications for neutron star mass.

doi: 10.1103/PhysRevLett.79.5214
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1997SO20      Phys.Rev. C56, 2244 (1997)

C.Song, G.E.Brown, D.-P.Min, M.Rho

Fluctuations in ' Brown-Rho Scaled ' Chiral Lagrangians

doi: 10.1103/PhysRevC.56.2244
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1996BR03      Nucl.Phys. A596, 503 (1996)

G.E.Brown, M.Rho

From Chiral Mean Field to Walecka Mean Field and Kaon Condensation

doi: 10.1016/0375-9474(95)00420-3
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1996BR28      Nucl.Phys. A609, 519 (1996)

G.E.Brown, M.Buballa, M.Rho

A Mean-Field Theory of the Chiral Phase Transition

doi: 10.1016/S0375-9474(96)00295-3
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1996KO54      Nucl.Phys. A610, 342c (1996)

C.M.Ko, G.Q.Li, G.E.Brown, H.Sorge

Enhancement of Low-Mass Dileptons in SPS Heavy-Ion Collisions: Possible evidence for dropping rho meson mass in medium

NUCLEAR REACTIONS 9Be(p, X), E=450 GeV; W, 197Au(p, X), E=200 GeV; analyzed dilepton invariant mass spectra. Relativistic transport model.

doi: 10.1016/S0375-9474(96)00368-5
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1996LI10      Phys.Lett. 381B, 17 (1996)

G.Q.Li, C.M.Ko, G.E.Brown

Kaon Azimuthal Distributions in Heavy-Ion Collisions

NUCLEAR REACTIONS 197Au(197Au, X), E=1 GeV/nucleon; analyzed nucleon, pion azimuthal distribution at mid-rapidity, relativistic collisions. Relativistic transport model.

doi: 10.1016/0370-2693(96)00582-5
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1996LI26      Nucl.Phys. A606, 568 (1996)

G.Q.Li, C.M.Ko, G.E.Brown

Effects of In-Medium Vector Meson Masses on Low-Mass Dileptons from SPS Heavy-Ion Collisions

NUCLEAR REACTIONS 197Au(S, X), E=200 GeV/nucleon; calculated longitudinal, transverse freeze-out flow velocities, baryon resonance, meson abundance, central baryon density time evolution, proton, pion transverse momentum spectra, rapidity distribution, other aspects. Relativistic transport model.

doi: 10.1016/0375-9474(96)00191-1
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1996LI49      Nucl.Phys. A611, 539 (1996)

G.Q.Li, C.M.Ko, G.E.Brown, H.Sorge

Dilepton Production in Proton-Nucleus and Nucleus-Nucleus Collisions at SPS Energies

NUCLEAR REACTIONS Pb, 197Au(Si, X), E=200 GeV; 197Au, 9Be(p, X), E=450 GeV; analyzed dilepton invariant mass spectra. 197Au(Pb, X), E=160 GeV/nucleon; analyzed normalized total dilepton yield. Relativistic transport model.

doi: 10.1016/S0375-9474(96)00318-1
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1995BO09      Nucl.Phys. A583, 623c (1995)

I.Bombaci, M.Prakash, M.Prakash, P.J.Ellis, J.M.Lattimer, G.E.Brown

Newborn Hot Neutron Stars

doi: 10.1016/0375-9474(94)00736-7
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1995BR22      Nucl.Phys. A593, 295 (1995)

G.E.Brown, M.Buballa, Z.B.Li, J.Wambach

Where the Nuclear Pions Are

NUCLEAR STRUCTURE 40Ca; calculated spin-longitudinal, spin-transverse response functions ratio. 40Ca, 56Fe; analyzed EMC ratio; deduced excess nuclear pions absence related features.

doi: 10.1016/0375-9474(95)00330-4
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1995BR25      Nucl.Phys. A590, 527c (1995)

G.E.Brown, M.Rho

Chiral Restoration in Hot Matter

doi: 10.1016/0375-9474(95)00270-B
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1995LE09      Nucl.Phys. A585, 401 (1995)

C.-H.Lee, G.E.Brown, D.-P.Min, M.Rho

An Effective Chiral Lagrangian Approach to Kaon-Nuclear Interactions. Kaonic Atom and Kaon Condensation

doi: 10.1016/0375-9474(94)00623-U
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1995LI42      Phys.Rev.Lett. 75, 4007 (1995)

G.Q.Li, C.M.Ko, G.E.Brown

Enhancement of Low-Mass Dileptons in Heavy Ion Collisions

NUCLEAR REACTIONS 197Au(S, X), E=200 GeV/nucleon; analyzed low mass dileptons enhancement. Relativistic transport model.

doi: 10.1103/PhysRevLett.75.4007
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1994BR04      Nucl.Phys. A567, 937 (1994)

G.E.Brown, C.-H.Lee, M.Rho, V.Thorsson

From Kaon-Nuclear Interactions to Kaon Condensation

doi: 10.1016/0375-9474(94)90335-2
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1994BR05      Nucl.Phys. A568, 895 (1994)

G.E.Brown, J.Wambach

Model for the Quasifree Polarization-Transfer Measurements in the (p(pol), n(pol)) Reaction at 495 MeV

NUCLEAR REACTIONS 40Ca(polarized p, n), E=495 MeV; calculated longitudinal, transverse response functions, ratio. Density-dependent ρ-meson in evaluating nucleon-nucleon tensor interaction.

doi: 10.1016/0375-9474(94)90365-4
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1994BR21      Nucl.Phys. A574, 217c (1994)


The Equation of State of Dense Matter: Supernovae, neutron stars and black holes

doi: 10.1016/0375-9474(94)90047-7
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1994BR23      Phys.Rev. C50, 1731 (1994)

G.E.Brown, R.Machleidt

Strength of the ρ Meson Coupling to Nucleons

NUCLEAR REACTIONS 1H(p, p), E= ≤ 400 MeV; calculated phase shifts vs E; deduced ρNN coupling dependence of NN-interactions.

doi: 10.1103/PhysRevC.50.1731
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1994HO22      Nucl.Phys. A580, 408 (1994)

S.-T.Hong, G.E.Brown

Baryon-Decuplet Magnetic Moments

doi: 10.1016/0375-9474(94)90905-9
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1994LE21      Phys.Lett. 335B, 266 (1994)

C.-H.Lee, G.E.Brown, M.Rho

Kaon Condensation in ' Nuclear Star ' Matter

doi: 10.1016/0370-2693(94)90348-4
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1993BR04      Nucl.Phys. A553, 705c (1993)

G.E.Brown, M.Rho, M.Soyeur

Vector Meson Masses in the Nuclear Medium

NUCLEAR REACTIONS 4,3He(e, e'p), E not given; compiled, reviewed response function data, analyses; deduced in-medium vector meson masses implications.

doi: 10.1016/0375-9474(93)90684-P
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1993HO21      Nucl.Phys. A564, 491 (1993)

S.-T.Hong, G.E.Brown

Meson-Cloud Contributions to Baryon Magnetic Moments

NUCLEAR STRUCTURE 1n, 1H; calculated μ. Nonrelativistic quark model.

doi: 10.1016/0375-9474(93)90210-O
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1993SC27      Nucl.Phys. A562, 644 (1993)

T.Schafer, V.Koch, G.E.Brown

Charge Symmetry Breaking and the Neutron-Proton Mass Difference

NUCLEAR STRUCTURE 1H, 1n; calculated mass difference vs QCD sum rule based density; deduced ρ(omega) mixing role in charge symmetry breaking in meson sector.

doi: 10.1016/0375-9474(93)90133-I
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1993SO07      Nucl.Phys. A556, 355 (1993)

M.Soyeur, G.E.Brown, M.Rho

In-Medium Behaviour of Vector Mesons and the Longitudinal and Transverse Response Functions in (e, e'p) Reactions

NUCLEAR REACTIONS 4,3He, 40Ca(e, e'p), E not given; calculated longitudinal to transverse response function ratio vs momentum transfer; deduced in-medium vector meson behaviour role in quenching.

doi: 10.1016/0375-9474(93)90366-6
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1991BR27      Phys.Rev. C44, 2653 (1991)

G.E.Brown, A.Sethi, N.M.Hintz

Proton-Nucleus Scattering and Density Dependent Meson Masses in the Nucleus

NUCLEAR REACTIONS 208Pb(p, p), E=796 MeV; 208Pb, 58Ni, 40Ca(p, p), E=498 MeV; calculated σ(θ); deduced density dependent meson masses role. Relativistic impulse approximation.

doi: 10.1103/PhysRevC.44.2653
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1990BR06      Phys.Lett. 237B, 3 (1990)

G.E.Brown, M.Rho

In-Medium Stiffening of the Nucleon-Nucleon Spin-Isospin Interaction

NUCLEAR STRUCTURE 208Pb; calculated longitudinal, transverse response function ratio. In-medium nucleon-nucleon interaction stiffening.

doi: 10.1016/0370-2693(90)90450-K
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1989GU12      Nucl.Phys. A494, 558 (1989)

C.Guet, M.Soyeur, J.Bowlin, G.E.Brown

Collective Spin-Isospin Vibrations and Δ-Excitation in Heavy-Ion Collisions

NUCLEAR REACTIONS 12C(3He, t), E=0.9, 1.1 GeV; calculated σ vs impact parameter. Spin-isospin mode coherent excitation mechanism.

doi: 10.1016/0375-9474(89)90191-7
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1988BR16      Phys.Rev.Lett. 60, 2723 (1988)

G.E.Brown, C.B.Dover, P.B.Siegel, W.Weise

K+-Nucleus Scattering and the ' Swelling ' of Nucleons in Nuclei

NUCLEAR REACTIONS 12C(K+, K+), E at 800 MeV/c; calculated σ(θ); deduced nucleon swelling role.

doi: 10.1103/PhysRevLett.60.2723
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1988LI25      Phys.Lett. 213B, 531 (1988)

G.L.Li, K.F.Liu, G.E.Brown

Role of Nuclear Binding in the EMC Effect

NUCLEAR STRUCTURE 56Fe, 12C, 40Ca, 27Al, 107Ag, 197Au; calculated structure function ratio; deduced quark confinement scales ratio.

doi: 10.1016/0370-2693(88)91305-6
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1987BA91      Phys.Rev.Lett. 59, 736 (1987)

E.Baron, H.A.Bethe, G.E.Brown, J.Cooperstein, S.Kahana

Type II supernovae from prompt explosions

doi: 10.1103/PhysRevLett.59.736
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1987ER05      Nucl.Phys. A465, 123 (1987)

T.Erikson, K.F.Quader, G.E.Brown, H.T.Fortune

A Coexistence Model for 18F

NUCLEAR REACTIONS 18O(3He, p), E not given; calculated L=0, 2 transfer σ. Coexistence model.

NUCLEAR STRUCTURE 18F; calculated levels, single nucleon spectroscopic factors. Coexistence model.

doi: 10.1016/0375-9474(87)90301-0
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1986BR10      Nucl.Phys. A454, 669 (1986)

G.E.Brown, M.Rho, W.Weise

Phenomenological Delineation of the Quark-Gluon Structure from Nucleon Electromagnetic Form Factors

NUCLEAR STRUCTURE 1H; calculated charge form factor. Topological chiral models.

doi: 10.1016/0375-9474(86)90112-0
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1986LE03      Phys.Rev. A33, 968 (1986)

J.C.Levin, S.L.Sorensen, B.Crasemann, Mau Hsiung Chen, G.S.Brown

Krypton L-MM Auger Spectra: New Measurements and Analysis

ATOMIC PHYSICS Kr; measured L-MM Auger spectra; deduced final state configuration interaction, ground state correlation, Coster-Kronig fluctuation shifts. High resolution, statistics. Relativistic treatment.

doi: 10.1103/PhysRevA.33.968
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1983SC39      Phys.Lett. 132B, 269 (1983)

B.Schwesinger, A.Wirzba, G.E.Brown

Double-Δ Excitation in Pion Absorption on 4He

NUCLEAR REACTIONS 4He(π-, 4p), (π+, 4n), E=200-1200 MeV; calculated σ(E); deduced double isobar excitation mechanism role.

doi: 10.1016/0370-2693(83)90305-2
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1982BR32      Phys.Lett. 118B, 39 (1982)

G.E.Brown, H.Toki, W.Weise, A.Wirzba

Double-Δ(1232) Formation in Pion-Nucleus Absorption

NUCLEAR REACTIONS 27Al(π+, p), (π-, p), E=220 MeV; 181Ta, Ni(π+, p), (π-, p), E=160, 220 MeV; calculated proton yield ratio following pion absorption; deduced double isobar role in absorption process.

doi: 10.1016/0370-2693(82)90597-4
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1981BR27      Nucl.Phys. A372, 397 (1981)

G.E.Brown, M.Rho

The Giant Gamow-Teller Resonance

NUCLEAR STRUCTURE 208Pb; calculated Gamow-Teller resonance strength distribution. Boson exchange model, isobar coupling.

doi: 10.1016/0375-9474(81)90043-9
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1981KE01      Phys.Rev.Lett. 46, 103 (1981)

S.Krewald, F.Osterfeld, J.Speth, G.E.Brown

Nuclear-Structure Effects Connected with Charge-Exchange Resonances

NUCLEAR STRUCTURE 208Pb, 208Bi; calculated GDR, IAR, Gamow-Teller resonance energies. Generalized Landau-Migdal interaction, dynamical RPA, collective effects.

NUCLEAR REACTIONS 208Pb(p, n), E=120 MeV; calculated σ(θ). 208Bi deduced nuclear structure effects associated with Gamow-Teller resonance, IAS. Generalized Landau-Migdal interaction, dynamical RPA, collective effects.

doi: 10.1103/PhysRevLett.46.103
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1980BR06      Nucl.Phys. A338, 269 (1980)

G.E.Brown, M.Rho

Velocity Dependence of the Nucleon-Nucleon Interaction, Exchange Currents and Enhancement of the Dipole Sum Rule in Nuclei

NUCLEAR STRUCTURE 208Pb; calculated enhancement of dipole sum rule in GDR region. Velocity dependent nucleon-nucleon interaction, exchange currents.

doi: 10.1016/0375-9474(80)90033-0
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1980SP04      Nucl.Phys. A343, 382 (1980)

J.Speth, V.Klemt, J.Wambach, G.E.Brown

The Influence of the π- and ρ-Exchange Potential on Magnetic Properties of Nuclei

NUCLEAR STRUCTURE 12C, 16O, 207Tl, 207,208,209Pb, 209Bi; calculated levels, μ, B(λ); deduced π-, ρ-meson exchange effects. Landau-Migdal theory.

doi: 10.1016/0375-9474(80)90660-0
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1980WA05      J.Phys.(London) G6, 369 (1980)

D.L.Watson, D.N.Slater, G.Brown

Compound-Nucleus Contributions to the 46Ti(d, p)47Ti Reaction

NUCLEAR REACTIONS 46Ti(d, p), (d, d), E=7, 10 MeV; measured σ(E, θ); deduced reaction mechanism. Enriched target. Hauser-Feshbach analysis.

doi: 10.1088/0305-4616/6/3/013
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2159.

1979BR29      Nucl.Phys. A330, 290 (1979)

G.E.Brown, J.S.Dehesa, J.Speth

A Dynamical Theory of the Giant Dipole Resonance in Nuclei

NUCLEAR STRUCTURE 208Pb; calculated M1 strength distribution. Effective mass, coupling of particles, holes to vibrations.

doi: 10.1016/0375-9474(79)90055-1
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1978OS02      Phys.Lett. 73B, 393 (1978)

E.Oset, D.Strottman, G.E.Brown

Nuclear Structure Effects in Pion Double Charge Exchange

NUCLEAR REACTIONS 18O(π+, π-), E=187 MeV; calculated σ(θ).

doi: 10.1016/0370-2693(78)90748-7
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1978WA04      Nucl.Phys. A296, 1 (1978)

D.L.Watson, G.Brown

A Study of the Nucleus 52Cr Using the 51V(τ, d)52Cr Reaction at 15 Mev

NUCLEAR REACTIONS 51V(3He, d), (3He, 3He), E=15.0 MeV; measured σ(Ed, θ). 52Cr deduced levels, L(p), S, partial widths. Natural target. Compared with DWBA, other model prediction.

doi: 10.1016/0375-9474(78)90410-4
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1977AB02      J.Phys.(London) G3, 253 (1977)

A.L.Abu-Ghazaleh, I.M.Naqib, G.Brown

A Spectroscopic Study of the 66Zn(d, p)67Zn Reaction

NUCLEAR REACTIONS 66Zn(d, p), E=12 MeV; measured σ(Ep, θ); deduced Q. 67Zn deduced levels, L, S.

doi: 10.1088/0305-4616/3/2/014
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1092.

1977AN16      Nucl.Phys. A285, 516 (1977)

M.R.Anastasio, G.E.Brown

Meson Exchange and the Theory of Finite Fermi Systems

NUCLEAR STRUCTURE 208Pb; calculated M1 state parameters.

doi: 10.1016/0375-9474(77)90650-9
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1977ER01      Nucl.Phys. A277, 1 (1977)

T.Erikson, G.E.Brown

Nuclear Coexistence in 18O

NUCLEAR STRUCTURE 18O; calculated levels, B(E2).

doi: 10.1016/0375-9474(77)90258-5
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1976LI14      Nucl.Phys. A265, 385 (1976)

K.F.Liu, G.E.Brown

Giant Multipole Resonances

NUCLEAR STRUCTURE 16O, 40Ca, 90Zr, 208Pb; calculated giant multipole resonances, strength distribution.

doi: 10.1016/0375-9474(76)90551-0
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1974BR19      Nucl.Phys. A225, 267 (1974)

G.Brown, A.Denning, J.G.B.Haigh

The Magnitude of Compound Nucleus Effects in Ca(d, p) Reactions

NUCLEAR REACTIONS 40,42,44,48Ca(d, p), E=10 MeV; measured σ(Ep, θ). 41,43,45,49Ca deduced levels, L(n), S; estimated compound nucleus contributions. Enriched targets.

doi: 10.1016/0375-9474(74)90542-9
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1974BR33      Nucl.Phys. A232, 125 (1974)

G.Brown, J.G.B.Haigh, D.L.Watson

The Magnitude of (d, p) Cross Sections from Compound Nucleus Reactions for 2s-1d Shell Nuclei

NUCLEAR REACTIONS 24Mg(d, p), E=10 MeV; measured σ(Ep, θ). 25Mg(d, p), E=8 MeV; 26Mg(d, p), E=6, 10 MeV; 28Si(d, p), E=10 MeV; 30Si(d, p), E=7, 10 MeV; calculated σ(Ep, θ); deduced reaction mechanism. Enriched target.

doi: 10.1016/0375-9474(74)90648-4
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1974KO31      Nucl.Phys. A236, 269 (1974)

C.M.Ko, H.C.Pauli, M.Brack, G.E.Brown

A Microscopic, But Not Self-Consistent Approach to Nuclear Binding and Deformation Energies

NUCLEAR STRUCTURE 48,40Ca, 90Zr, 208Pb; calculated binding energy, rms radii. 240Pu; calculated deformation, binding energy.

doi: 10.1016/0375-9474(74)90254-1
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1973BR09      Nucl.Phys. A205, 73 (1973)

G.E.Brown, V.Horsfjord, K.F.Liu

The Isovector Monopole Vibration; Coulomb Energies, Breaking of Charge Symmetry and Effects from α-Particle Correlation in the Nuclear Surface

doi: 10.1016/0375-9474(73)90120-6
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