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NSR database version of April 27, 2024.

Search: Author = Z.Long

Found 9 matches.

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2024CH17      Eur.Phys.J. A 60, (2024)

Y.Chen, Y.Qiu, Q.Li, Sh.Tang, Y.Yang, Zh.Ren, W.Jiang, R.Fan, H.Yi, R.Liu, J.Tang, H.Jing, Ch.Lan, Y.Li, Zh.Tan, Q.An, J.Bai, J.Bao, Y.Bao, P.Cao, H.Chen, Q.Chen, Zh.Chen, Z.Cui, Ch.Feng, K.Gao, X.Gao, M.Gu, Ch.Han, Z.Han, G.He, Y.He, Y.Hong, Y.Hu, H.Huang, X.Huang, H.Jiang, Zh.Jiang, L.Kang, B.Li, Ch.Li, J.Li, X.Li, J.Liu, Sh.Liu, X.Liu, Z.Long, G.Luan, Ch.Ning, M.Niu, B.Qi, J.Ren, X.Ruan, Zh.Song, K.Sun, Zh.Sun, X.Tang, B.Tian, L.Wang, P.Wang, Zh.Wang, Zh.Wen, X.Wu, X.Wu, L.Xie, X.Yang, L.Yu, T.Yu, Y.Yu, G.Zhang, L.Zhang, Q.Zhang, X.Zhang, Y.Zhang, Zh.Zhang, L.Zhou, Zh.Zhou, K.Zhu

Measurement of the neutron flux of CSNS Back-n ES#1 under small collimators from 0.5 eV to 300 MeV

NUCLEAR REACTIONS 235U(n, F), 6Li(n, X), E=0.0000005-300 MeV; measured reaction products, En, In, TOF; deduced σ, neutron flux and uncertainties. China Spallation Neutron Source (CSNS).

doi: 10.1140/epja/s10050-024-01272-z
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2023NI11      Nucl.Instrum.Methods Phys.Res. A1057, 168703 (2023)

M.Niu, Z.Long, R.Fan, W.Jiang, J.Liu, Q.Xiu, R.Xu, H.Wang, Zh.Zhou, K.Sun, Zh.Zhang, H.Zhang, H.Yi, Y.Chen, D.Wang, X.Xia, H.Liang

Research on the performance of a diamond detector for the cross-section measurements at CSNS Back-n

NUCLEAR REACTIONS 12C, 6Li(n, α), 12C(n, n'), E=0.00001-100 MeV; measured reaction products, En, In, TOF; deduced the bi-parametric contour plot facilitated the identification of event bands in a bi-parameter experiment (neutron time of flight and deposited energy). Comparison with MATLAB simulations. The Back-n white neutron facility located within the China Spallation Neutron Source (CSNS).

doi: 10.1016/j.nima.2023.168703
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2022HU07      Phys.Rev. C 106, 014604 (2022)

X.Huang, G.-F.Wei, Q.-J.Zhi, Y.-C.Yang, Z.-W.Long

Neutron-proton differential transverse flow in 132Sn + 124Sn collisions at 270 MeV/nucleon

NUCLEAR REACTIONS 124Sn(132Sn, X), E=270 MeV/nucleon; calculated excitation function of the neutron-proton differential transverse flows, differential transverse flows of free neutrons and protons in the collision process. Isospin- and momentum dependent Boltzmann-Uehling-Uhlenbeck (IBUU) transport model.

doi: 10.1103/PhysRevC.106.014604
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2021WE08      Phys.Rev. C 103, 054607 (2021)

G.-F.Wei, C.Liu, X.-W.Cao, Q.-J.Zhi, W.-J.Xiao, C.-Y.Long, Z.-W.Long

Necessity of self-consistent calculations for the electromagnetic field in probing the nuclear symmetry energy using pion observables in heavy-ion collisions

NUCLEAR REACTIONS 96Ru(96Ru, X), 96Zr(96Zr, X), E=400 MeV/nucleon; calculated contours of the electric fields and densities, multiplicities of π- and π+, relative kinetic energy distributions of nucleons, double π-+ ratio using two approaches: self-consistent calculation in the framework of isospin- and momentum-dependent IBUU transport model, and by Lienard-Wiechert formula for heavy-ion collisions.

doi: 10.1103/PhysRevC.103.054607
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2020WE02      Phys.Rev. C 101, 014613 (2020)

G.-F.Wei, X.-G.Cao, Q-J.Zhi, X.-W.Cao, Z.-W.Long

Proton-proton momentum correlation function as a probe of the high momentum tail of the nucleon-momentum distribution

NUCLEAR REACTIONS 197Au(197Au, X), E=400 MeV/nucleon; calculated momentum distributions of a proton and a neutron, average proton emission time and proton emission rate, and momentum correlation function (MCF) of pp pairs with and without the short-range correlations (SRCs); deduced effects of the presence and the fraction of nucleons of the high momentum tail (HMT) in the nucleon momentum distribution (NMD). Isospin- and momentum-dependent Boltzmann-Uehling-Uhlenbeck (BUU) transport model.

doi: 10.1103/PhysRevC.101.014613
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2020WE09      Phys.Rev. C 102, 024614 (2020)

G.-F.Wei, C.Xu, W.Xie, Q.-J.Zhi, S.-G.Chen, Z.-W.Long

Effects of density-dependent scenarios of in-medium nucleon-nucleon interactions in heavy-ion collisions

NUCLEAR REACTIONS 197Au(197Au, X), E=400 MeV/nucleon; calculated nuclear symmetry energies, momentum dependencies of symmetry potentials, free neutron-proton ratios, reduced maximum densities, kinetic energy distributions of free neutron-proton ratios, π-+ ratios using the momentum dependent interaction (MDI) and and improved-MDI (IMDI) single-nucleon potentials for the Boltzmann-Uehling-Uhlenbeck (BUU) transport model; discussed effects of differences of in-medium nucleon-nucleon interactions in the separate and total density-dependent scenarios on isospin-sensitive observables in heavy-ion collisions (HICs).

doi: 10.1103/PhysRevC.102.024614
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2018WE09      Phys.Rev. C 98, 024618 (2018)

G.-F.Wei, G.-C.Yong, L.Ou, Q.-J.Zhi, Z.-W.Long, X.-H.Zhou

Beam-energy dependence of the relativistic retardation effects of electrical fields on the π-+ ratio in heavy-ion collisions

NUCLEAR REACTIONS 96Ru(96Ru, X), 96Zr(96Zr, X), 197Au(197Au, X), E=200-800 MeV/nucleon; calculated dependence of relativistic retardation effects of electrical fields on the single and double π-+ ratios in heavy-ion reactions, dynamical multiplicities of π-, Δ- and Δ0 resonances. Discussed the method as a probe of nuclear symmetry energy. Isospin- and momentum-dependent transport Boltzmann-Uehling-Uhlenbeck model IBUU11.

doi: 10.1103/PhysRevC.98.024618
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1991AN12      Phys.Rev. C44, 398 (1991)

N.Anantaraman, J.S.Winfield, S.M.Austin, J.A.Carr, C.Djalali, A.Gillibert, W.Mittig, J.A.Nolen, Jr., Z.E.Long

(12C, 12B) and (12C, 12N) Reactions at E/A = 70 MeV as Spin Probes: Calibration and application to 1+ states in 56Mn

NUCLEAR REACTIONS 12C, 26Mg, 54Fe, 58Ni, 90Zr(12C, 12B), 12C, 56Fe(12C, 12N), E=840 MeV; measured σ(θ). 56Mn deduced 1+ level Gamow-Teller strengths. DWBA, shell model.

doi: 10.1103/PhysRevC.44.398
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1991OR01      Phys.Lett. 258B, 29 (1991)

N.A.Orr, W.Mittig, L.K.Fifield, M.Lewitowicz, E.Plagnol, Y.Schutz, Z.W.Long, L.Bianchi, A.Gillibert, A.V.Belozyorov, S.M.Lukyanov, Yu.E.Penionzhkevich, A.C.C.Villari, A.Cunsolo, A.Foti, G.Audi, C.Stephan, L.Tassan-Got

New Mass Measurements of Neutron-Rich Nuclei Near N = 20

NUCLEAR REACTIONS Ta(48Ca, X), E=55 MeV/nucleon; measured projectile like fragment spectra. 17,19B, 20C, 20,21,22N, 22,23,24O, 24,25,26,27F, 26,27,28,29,30Ne, 28,29,30,31,32,33Na, 30,31,32,33,34,35Mg, 32,33,34,35,36,37Al, 36,37Si, 37P deduced mass excess.

doi: 10.1016/0370-2693(91)91203-8
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Note: The following list of authors and aliases matches the search parameter Z.Long: , Z.E.LONG, Z.W.LONG