NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = J.Duan Found 8 matches. 2022ZH40 Phys.Rev. C 106, L011602 (2022) K.Zhao, Z.Liu, F.S.Zhang, N.Wang, J.Z.Duan Distinct sequential and massive transfer processes for production of neutron-rich N ≈ 126 nuclei in 238U + 198Pt NUCLEAR REACTIONS 238U(198Pt, X)204Pt/204Os/200Re/198W/195Ta, E=8.0 MeV/nucleon; calculated σ, σ(θ), nucleon exchange rates, average lifetimes of the composite systems, distributions of the average number of neutrons evaporated from primary fragments, kinetic energy distributions of primary fragments. Improved quantum molecular dynamics model (ImQMD). Investigated underlying mechanisms responsible for the enhanced production of new neutron-rich nuclei with neutron numbers around 126. Established the role of sequential transfer and massive transfer of nucleons in producing targetlike and projectile like fragments.
doi: 10.1103/PhysRevC.106.L011602
2020BA23 Nature(London) 581, 159 (2020) H.Bao, J.Duan, S.Jin, X.Lu, P.Li, W.Qu, M.Wang, I.Novikova, E.E.Mikhailov, K.-F.Zhao, K.Molmer, H.Shen, Y.Xiao Spin squeezing of 1011 atoms by prediction and retrodiction measurements ATOMIC PHYSICS 87Rb; measured frequencies; deduced the degree of spin squeezing.
doi: 10.1038/s41586-020-2243-7
2014AL26 Nucl.Data Sheets 118, 542 (2014) E.Alhassan, H.Sjostrand, J.Duan, C.Gustavsson, A.J.Koning, S.Pomp, D.Rochman, M.Osterlund Combining Total Monte Carlo and Benchmarks for Nuclear Data Uncertainty Propagation on a Lead Fast Reactor's Safety Parameters
doi: 10.1016/j.nds.2014.04.129
2014DU07 Nucl.Data Sheets 118, 346 (2014) J.Duan, S.Pomp, H.Sjostrand, E.Alhassan, C.Gustavsson, M.Osterlund, A.Koning, D.Rochman Uncertainty Study of Nuclear Model Parameters for the n+56Fe Reactions in the Fast Neutron Region below 20 MeV
doi: 10.1016/j.nds.2014.04.076
2014SJ01 Nucl.Data Sheets 118, 527 (2014) H.Sjostrand, E.Alhassan, J.Duan, C.Gustavsson, A.J.Koning, S.Pomp, D.Rochman, M.Osterlund Propagation of Nuclear Data Uncertainties for ELECTRA Burn-up Calculations
doi: 10.1016/j.nds.2014.04.125
2011DU24 J.Korean Phys.Soc. 59, 999s (2011) J.-F.Duan, J.-S.Zhang, H.-C.Wu Theoretical Analysis of Neutron Double-Differential Cross Sections of n+9Be Reactions NUCLEAR REACTIONS 9Be(n, n'), (n, nx), E=7.1, 8.09, 8.17, 9.09, 9.97, 10.26, 14.1, 18 MeV; calculated σ(En, θ) using updated levels, J, π; deduced new states. Comparison to data.
doi: 10.3938/jkps.59.999
2009DU17 Phys.Rev. C 80, 064612 (2009) Predicted levels of 9Be based on a theoretical analysis of neutron double-differential cross sections at En=14.1 and 18 MeV NUCLEAR REACTIONS 9Be(n, 2n), (n, X), E=14.1, 18 MeV; analyzed outgoing energy-angular spectra, σ, σ(θ) using statistical theory for neutron induced-light nucleus reactions.
doi: 10.1103/PhysRevC.80.064612
2008SU21 Phys.Rev. C 78, 054610 (2008); Publishers Note Phys.Rev. C 80, 029901 (2009) New calculation method of neutron kerma coefficients for carbon and oxygen below 30 MeV NUCLEAR REACTIONS 12C, 16O(n, p), (n, α), (n, d), (n, t), (n, 3He), (n, 6Li), E<30 MeV; calculated kerma coefficients. Comparison with experimental data.
doi: 10.1103/PhysRevC.78.054610
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