NSR Query Results
Output year order : Descending NSR database version of April 26, 2024. Search: Author = K.Wei Found 13 matches. 2023BA15 Nucl.Fusion 63, 076009 (2023) L.Baylor, A.Deur, N.Eidietis, W.W.Heidbrink, G.L.Jackson, J.Liu, M.M.Lowry, G.W.Miller, D.Pace, A.M.Sandorfi, S.P.Smith, S.Tafti, K.Wei, X.Wei, X.Zheng Polarized fusion and potential in situ tests of fuel polarization survival in a tokamak plasma NUCLEAR REACTIONS 3H(polarized d, n), (polarized 3He, p), E<250 keV; analyzed available data; deduced selection of shots in future plasma, ratio of yields with fuel spins parallel and antiparallel.
doi: 10.1088/1741-4326/acc3ae
2023HA40 Commun. Phys. 6, 220 (2023) J.Han, Y.Ye, J.Lou, X.Yang, Q.Li, Z.Yang, Y.Yang, J.Wang, J.Xu, Y.Ge, H.Hua, Z.Li, B.Yang, Y.Liu, S.Bai, K.Ma, J.Chen, G.Li, Z.Hu, H.Yu, Z.Tan, L.Yang, S.Wang, L.Tao, W.Liu, Y.Jiang, J.Li, D.Wang, S.Huang, Y.Chen, W.L.Pu, K.Wei, J.Ma, H.Yang, P.Ma, S.Xu, Z.Bai, S.Jin, F.Duan, Y.Song, L.Hu, Y.Li, J.Li, S.Zhang, M.Huang, D.Wang, Z.Li Nuclear linear-chain structure arises in carbon-14 RADIOACTIVITY 14C(α) [from 1H(14C, 14C'), E=23 MeV/nucleon]; measured decay products, Eα, Iα. 14C; deduced Q-value, excitation energy spectra, resonant states in 14C, J, π, widths, σ(θ). Comparison with the antisymmetrized molecular dynamics (AMD) calculations. The Radioactive Ion Beam Line at the Heavy Ion Research Facility in Lanzhou (HIRFL-RIBLL1).
doi: 10.1038/s42005-023-01342-6
2023MA57 Chin.Phys.C 47, 114001 (2023) K.Ma, Y.-L.Ye, Ch.-J.Lin, J.-H.Chen, D.-X.Wang, J.-X.Han, H.-M.Jia, L.Yang, L.-Sh.Yang, Z.-Y.Hu, Y.Chen, W.-L.Pu, G.Li, Zh.-W.Tan, D.-H.Huang, T.-P.Luo, Sh.-H.Zhong, J.-L.Lou, X.-F.Yang, Zh.-H.Li, Q.-T.Li, J.-Y.Xu, Z.-H.Yang, K.Wei New measurement of 4He and proton decays from resonant states in 19Ne RADIOACTIVITY 19N(p), (α) [from 6Li(16O, X)19Ne, E=96 MeV]; measured decay products, Ep, Ip, Eα, Iα; deduced excitation-energy spectra, level energies, resonance parameters for astrophysical applications. The HI-13 tandem accelerator facility at the China Institute of Atomic Energy, Beijing.
doi: 10.1088/1674-1137/acc16f
2023WA01 Chin.Phys.C 47, 014001 (2023) D.-X.Wang, Y.-L.Ye, C.-J.Lin, J.-H.Chen, K.Ma, J.-X.Han, H.-M.Jia, L.Yang, L.-S.Yang, Z.-Y.Hu, Y.Chen, W.-L.Pu, G.Li, Z.-W.Tan, H.-Y.Zhu, T.-P.Luo, S.-H.Zhong, D.-H.Huang, J.-L.Lou, X.-F.Yang, Q.-T.Li, J.-Y.Xu, Z.-H.Yang, K.Wei α-cluster decay from 24Mg resonances produced in the 12C(16O, 24Mg)α reaction RADIOACTIVITY 24Mg(α) [from 12C(16O, 24Mg), E=96 MeV]; measured decay products, Eα, Iα; deduced resonant states, the energy-momentum of a 20Ne fragment, resonance parameters. Comparison with available data, theoretical calculations. The HI-13 tandem accelerator at the China Institute of Atomic Energy (CIAE) in Beijing.
doi: 10.1088/1674-1137/ac9e9a
2023YA30 Phys.Rev.Lett. 131, 242501 (2023) Z.H.Yang, Y.L.Ye, B.Zhou, H.Baba, R.J.Chen, Y.C.Ge, B.S.Hu, H.Hua, D.X.Jiang, M.Kimura, C.Li, K.A.Li, J.G.Li, Q.T.Li, X.Q.Li, Z.H.Li, J.L.Lou, M.Nishimura, H.Otsu, D.Y.Pang, W.L.Pu, R.Qiao, S.Sakaguchi, H.Sakurai, Y.Satou, Y.Togano, K.Tshoo, H.Wang, S.Wang, K.Wei, J.Xiao, F.R.Xu, X.F.Yang, K.Yoneda, H.B.You, T.Zheng Observation of the Exotic 0+2 Cluster State in 8He NUCLEAR REACTIONS C, 1H(8He, 8He), E=82.3 MeV/nucleon; measured reaction products, En, In. 6,8He; deduced σ(θ), resonant state J, π, large isoscalar monopole transition strength, and the emission of a strongly correlated neutron pair. Comparison with theoretical calculations. RIPS beam line of RIKEN Nishina Center.
doi: 10.1103/PhysRevLett.131.242501
2022FE06 Eur.Phys.J. A 58, 233 (2022) Revisiting the assignment of 13 D1 meson nonet
doi: 10.1140/epja/s10050-022-00886-5
2021WE04 Chin.Phys.C 45, 024109 (2021) K.Wei, H.-F.Zhang, Z.-X.He, X.-Y.Wang, S.-Q.Guo, B.T.Hu Multi-parameter global calculations of fission fragments using a simplified two-dimensional scission-point model NUCLEAR REACTIONS 233,235U(n, F), E=6.54 MeV; 239Pu(n, F), E=6.84 MeV; calculated charge and mass distributions, yields. Comparison with available data.
doi: 10.1088/1674-1137/abd083
2020WE11 Phys.Rev. C 102, 034318 (2020) α decay and cluster radioactivity within the redefined preformed cluster method RADIOACTIVITY 221,222,223,224,226Ra, 225Ac(α), (14C); 276Ds(α), (68Ni); 228Th(α), (20O); 230U(α), (22Ne); 230Th, 231Pa, 232,234U(α), (24Ne); 231Pa(α), (23F); 233U(α), (25Ne); 234U(α), (26Ne), (28Mg); 238Pu(α), (30Mg), (32Si); 242Cm(α), (34Si); 244Cm(α), (36Si); 246Cf(α), (38S); 248Cf(α), (40S); 250Cf(α), (42S); 252Fm(α), (44Ar); 254Fm(α), (46Ar); 256No(α), (48Ca); 258Md(α), (50K); 259Db(α), (51V); 261Rf(α), (53Ti); 262Rf(α), (54Ti); 264Rf(α), (56Ti); 266Bh(α), (58Mn); 267Bh(α), (59Mn); 269Hs(α), (61Fe); 268Hs(α), (60Fe); 270Hs(α), (62Fe); 271Ds(α), (63Ni); 273Hs(α), (65Fe); 276Mt(α), (68Co); 278Rg(α), (70Cu); 280Rg(α), (72Cu); 273Hs(α), (65Fe); 282Cn(α), (74Ga); 283Cn(α), (75Ga); 284Cn(α), (76Ga); 285Cn(α), (77Ga); 286Cn(α), (78Ga); 287Fl(α), (79Ge); 288Fl(α), (80Ge); 289Fl(α), (81Ge); 290Lv(α), (79Ge); calculated preformation factors, and half-lives of α and cluster decays. Generalized liquid drop model (GLDM) framework, with redefined preformed cluster method, and the preformation factor from WKB approximation. Comparison with available experimental values.
doi: 10.1103/PhysRevC.102.034318
2017WE10 Phys.Rev. C 96, 021601 (2017) Cluster preformation law for heavy and superheavy nuclei RADIOACTIVITY 222Ra(14C); 276Ds(68Ni); calculated potential barriers, preformation factors to include clusters with atomic numbers larger than 28 emitted by the superheavy nuclei, and breakdown of the previous cluster preformation law. Proposed new empirical preformation formulas for cluster decays of heavy and superheavy nuclei.
doi: 10.1103/PhysRevC.96.021601
2015CH44 Eur.Phys.J. A 51, 82 (2015) Investigation of ΛQ and ΞQ baryons in the heavy quark-light diquark picture
doi: 10.1140/epja/i2015-15082-3
2013YU01 Phys.Rev. C 87, 025205 (2013) S.G.Yuan, C.S.An, K.W.Wei, B.S.Zou, H.S.Xu Spectrum of low-lying s3QQ configurations with negative parity
doi: 10.1103/PhysRevC.87.025205
2012YU06 Eur.Phys.J. A 48, 61 (2012) S.G.Yuan, K.W.Wei, J.He, H.S.Xu, B.S.Zou Study of qqqc(c-bar) five quark system with three kinds of quark-quark hyperfine interaction
doi: 10.1140/epja/i2012-12061-2
2005LI36 Eur.Phys.J. A 25, 263 (2005) A possible assignment for the ground scalar meson nonet
doi: 10.1140/epja/i2005-10091-5
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