NSR Query Results


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NSR database version of April 11, 2024.

Search: Author = Z.G.Xiao

Found 66 matches.

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2023PO07      Phys.Rev. C 107, 054616 (2023)

K.Pomorski, B.Nerlo-Pomorska, C.Schmitt, Z.G.Xiao, Y.J.Chen, L.L.Liu

Fourier-over-spheroid shape parametrization applied to nuclear fission dynamics

NUCLEAR REACTIONS 235U(n, F), E = thermal; calculated fission fragments mass and charge yields, total kinetic energy (TKE) of fission fragments, post-fission neutron multiplicities, fission fragment excitation energy. 3D Langevin code, based on the Fourier-over-spheroid (FoS) shape parametrization, the LSD+Yukawa folded macroscopic-microscopic potential energy landscape, a procedure to account for charge equilibration at scission, and a method to compute the excitation energy available in the primary fragments. Comparison to experimental data.

RADIOACTIVITY 246,248,250,252,254,256,258,260,262Fm(SF); calculated fission fragment mass yields distribution, total kinetic energy (TKE) of fission fragments, post-fission neutron multiplicities. Comparison to experimental data.

NUCLEAR STRUCTURE 236U, 252,254,256,258,260,262Fm; calculated potential energy surfaces. 240Pu; calculated energy at scission as a function of the heavy fragment charge number, Wigner distribution probability of the fission fragment charge number.

doi: 10.1103/PhysRevC.107.054616
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2023PO11      Acta Phys.Pol. B54, 9-A2 (2023)

K.Pomorski, A.Dobrowolski, B.Nerlo-Pomorska, M.Warda, A.Zdeb, J.Bartel, H.Molique, C.Schmitt, Z.G.Xiao, Y.J.Chen, L.L.Liu

Fission Fragment Mass and Kinetic Energy Yields of Fermium Isotopes

NUCLEAR STRUCTURE 246,248,250,252,254,256,258,260,262Fm; analyzed available data; deduced the post-fission neutron multiplicities, potential energy surfaces.

doi: 10.5506/APhysPolB.54.9-A2
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2022YO08      Phys.Rev. C 106, 024902 (2022)

G.-C.Yong, B.-A.Li, Z.-G.Xiao, Z.-W.Lin

Probing the high-density nuclear symmetry energy with the Ξ-0 ratio in heavy-ion collisions at √ sNN ≈ 3 GeV

doi: 10.1103/PhysRevC.106.024902
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2021AB12      Phys.Rev. C 104, L061901 (2021)

M.S.Abdallah, B.E.Aboona, J.Adam, L.Adamczyk, J.R.Adams, J.K.Adkins, G.Agakishiev, I.Aggarwal, M.M.Aggarwal, Z.Ahammed, I.Alekseev, D.M.Anderson, A.Aparin, E.C.Aschenauer, M.U.Ashraf, F.G.Atetalla, A.Attri, G.S.Averichev, V.Bairathi, W.Baker, J.G.Ball Cap, K.Barish, A.Behera, R.Bellwied, P.Bhagat, A.Bhasin, J.Bielcik, J.Bielcikova, I.G.Bordyuzhin, J.D.Brandenburg, A.V.Brandin, I.Bunzarov, J.Butterworth, X.Z.Cai, H.Caines, M.Calderon de la Barca Sanchez, D.Cebra, I.Chakaberia, P.Chaloupka, B.K.Chan, F.-H.Chang, Z.Chang, N.Chankova-Bunzarova, A.Chatterjee, S.Chattopadhyay, D.Chen, J.Chen, J.H.Chen, X.Chen, Z.Chen, J.Cheng, M.Chevalier, S.Choudhury, W.Christie, X.Chu, H.J.Crawford, M.Csanad, M.Daugherity, T.G.Dedovich, I.M.Deppner, A.A.Derevschikov, A.Dhamija, L.Di Carlo, L.Didenko, P.Dixit, X.Dong, J.L.Drachenberg, E.Duckworth, J.C.Dunlop, N.Elsey, J.Engelage, G.Eppley, S.Esumi, O.Evdokimov, A.Ewigleben, O.Eyser, R.Fatemi, F.M.Fawzi, S.Fazio, P.Federic, J.Fedorisin, C.J.Feng, Y.Feng, P.Filip, E.Finch, Y.Fisyak, A.Francisco, C.Fu, L.Fulek, C.A.Gagliardi, T.Galatyuk, F.Geurts, N.Ghimire, A.Gibson, K.Gopal, X.Gou, D.Grosnick, A.Gupta, W.Guryn, A.I.Hamad, A.Hamed, Y.Han, S.Harabasz, M.D.Harasty, J.W.Harris, H.Harrison, S.He, W.He, X.H.He, Y.He, S.Heppelmann, S.Heppelmann, N.Herrmann, E.Hoffman, L.Holub, Y.Hu, H.Huang, H.Z.Huang, S.L.Huang, T.Huang, X.Huang, Y.Huang, T.J.Humanic, G.Igo, D.Isenhower, W.W.Jacobs, C.Jena, A.Jentsch, Y.Ji, J.Jia, K.Jiang, X.Ju, E.G.Judd, S.Kabana, M.L.Kabir, S.Kagamaster, D.Kalinkin, K.Kang, D.Kapukchyan, K.Kauder, H.W.Ke, D.Keane, A.Kechechyan, M.Kelsey, Y.V.Khyzhniak, D.P.Kikola, C.Kim, B.Kimelman, D.Kincses, I.Kisel, A.Kiselev, A.G.Knospe, H.S.Ko, L.Kochenda, L.K.Kosarzewski, L.Kramarik, P.Kravtsov, L.Kumar, S.Kumar, R.Kunnawalkam Elayavalli, J.H.Kwasizur, R.Lacey, S.Lan, J.M.Landgraf, J.Lauret, A.Lebedev, R.Lednicky, J.H.Lee, Y.H.Leung, C.Li, C.Li, W.Li, X.Li, Y.Li, X.Liang, Y.Liang, R.Licenik, T.Lin, Y.Lin, M.A.Lisa, F.Liu, H.Liu, H.Liu, P.Liu, T.Liu, X.Liu, Y.Liu, Z.Liu, T.Ljubicic, W.J.Llope, R.S.Longacre, E.Loyd, N.S.Lukow, X.F.Luo, L.Ma, R.Ma, Y.G.Ma, N.Magdy, D.Mallick, S.Margetis, C.Markert, H.S.Matis, J.A.Mazer, N.G.Minaev, S.Mioduszewski, B.Mohanty, M.M.Mondal, I.Mooney, D.A.Morozov, A.Mukherjee, M.Nagy, J.D.Nam, Md.Nasim, K.Nayak, D.Neff, J.M.Nelson, D.B.Nemes, M.Nie, G.Nigmatkulov, T.Niida, R.Nishitani, L.V.Nogach, T.Nonaka, A.S.Nunes, G.Odyniec, A.Ogawa, S.Oh, V.A.Okorokov, B.S.Page, R.Pak, J.Pan, A.Pandav, A.K.Pandey, Y.Panebratsev, P.Parfenov, B.Pawlik, D.Pawlowska, H.Pei, C.Perkins, L.Pinsky, R.L.Pinter, J.Pluta, B.R.Pokhrel, G.Ponimatkin, J.Porter, M.Posik, V.Prozorova, N.K.Pruthi, M.Przybycien, J.Putschke, H.Qiu, A.Quintero, C.Racz, S.K.Radhakrishnan, N.Raha, R.L.Ray, R.Reed, H.G.Ritter, M.Robotkova, O.V.Rogachevskiy, J.L.Romero, D.Roy, L.Ruan, J.Rusnak, N.R.Sahoo, H.Sako, S.Salur, J.Sandweiss, S.Sato, W.B.Schmidke, N.Schmitz, B.R.Schweid, F.Seck, J.Seger, M.Sergeeva, R.Seto, P.Seyboth, N.Shah, E.Shahaliev, P.V.Shanmuganathan, M.Shao, T.Shao, A.I.Sheikh, D.Shen, S.S.Shi, Y.Shi, Q.Y.Shou, E.P.Sichtermann, R.Sikora, M.Simko, J.Singh, S.Singha, M.J.Skoby, N.Smirnov, Y.Sohngen, W.Solyst, P.Sorensen, H.M.Spinka, B.Srivastava, T.D.S.Stanislaus, M.Stefaniak, D.J.Stewart, M.Strikhanov, B.Stringfellow, A.A.P.Suaide, M.Sumbera, B.Summa, X.M.Sun, X.Sun, Y.Sun, Y.Sun, B.Surrow, D.N.Svirida, Z.W.Sweger, P.Szymanski, A.H.Tang, Z.Tang, A.Taranenko, T.Tarnowsky, J.H.Thomas, A.R.Timmins, D.Tlusty, T.Todoroki, M.Tokarev, C.A.Tomkiel, S.Trentalange, R.E.Tribble, P.Tribedy, S.K.Tripathy, T.Truhlar, B.A.Trzeciak, O.D.Tsai, Z.Tu, T.Ullrich, D.G.Underwood, I.Upsal, G.Van Buren, J.Vanek, A.N.Vasiliev, I.Vassiliev, V.Verkest, F.Videbaek, S.Vokal, S.A.Voloshin, F.Wang, G.Wang, J.S.Wang, P.Wang, Y.Wang, Y.Wang, Z.Wang, J.C.Webb, P.C.Weidenkaff, L.Wen, G.D.Westfall, H.Wieman, S.W.Wissink, J.Wu, Y.Wu, B.Xi, Z.G.Xiao, G.Xie, W.Xie, H.Xu, N.Xu, Q.H.Xu, Y.Xu, Z.Xu, Z.Xu, C.Yang, Q.Yang, S.Yang, Y.Yang, Z.Ye, Z.Ye, L.Yi, K.Yip, Y.Yu, H.Zbroszczyk, W.Zha, C.Zhang, D.Zhang, J.Zhang, S.Zhang, S.Zhang, X.P.Zhang, Y.Zhang, Y.Zhang, Y.Zhang, Z.J.Zhang, Z.Zhang, Z.Zhang, J.Zhao, C.Zhou, X.Zhu, M.Zurek, M.Zyzak

Global Λ-hyperon polarization in Au+Au collisions at √ sNN = 3 GeV

doi: 10.1103/PhysRevC.104.L061901
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2021PO06      Chin.Phys.C 45, 054109 (2021)

K.Pomorski, J.M.Blanco, P.V.Kostryukov, A.Dobrowolski, B.Nerlo-Pomorska, M.Warda, Z.-G.Xiao, Y.-J.Chen

Fission fragment mass yields of Th to Rf even-even nuclei

NUCLEAR STRUCTURE 216,218,220,222,224,226,228,230,232,234,236,238,240Th, 220,222,224,226,228,230,232,234,236,238,240,242,244,246U, 222,224,226,228,230,232,234,236,238,240,242,244,246,248,250Pu, 224,226,228,230,232,234,236,238,240,242,244,246,248,250,252Cm, 238,240,242,244,246,248,250,252,254,256,258,260Cf, 240,242,244,246,248,250,252,254,256,258,260,262Fm, 242,244,246,248,250,252,254,256,258,260,262,264No, 250,252,254,256,258,260,262,264,266,268,270,272,274,276Rf; calculated potential energy surfaces, fission barrier heights, fragment mass yields.

doi: 10.1088/1674-1137/abec69
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2020ER04      Eur.Phys.J. A 56, 291 (2020)

A.Ertoprak, C.Qi, B.Cederwall, M.Doncel, U.Jakobsson, B.M.Nyako, G.Jaworski, P.Davies, G.de France, I.Kuti, D.R.Napoli, R.Wadsworth, S.S.Ghugre, R.Raut, B.Akkus, H.Al-Azri, A.Algora, G.de Angelis, A.Atac, T.Back, A.Boso, E.Clement, D.M.Debenham, Zs.Dombradi, S.Erturk, A.Gadea, F.Ghazi Moradi, A.Gottardo, T.Huyuk, E.Ideguchi, H.Li, C.Michelagnoli, V.Modamio, J.Nyberg, M.Palacz, C.M.Petrache, F.Recchia, M.Sandzelius, M.Siciliano, D.Sohler, J.Timar, J.J.Valiente-Dobon, Z.G.Xiao

Lifetimes of core-excited states in semi-magic 95Rh

NUCLEAR REACTIONS 58Ni(40Ca, 3p), E=150 MeV; measured reaction products, Eγ, Iγ; deduced γ-ray energies and intensities, J, π, level lifetimes, B(M1), B(E2), σ. Comparison with available data. The Doppler Shift Attenuation Method (DSAM) based on the Doppler broadened line shapes, the Grand Accelerateur National d'Ions Lourds (GANIL) accelerator facility.

doi: 10.1140/epja/s10050-020-00297-4
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Data from this article have been entered in the XUNDL database. For more information, click here.


2020OU02      Chin.Phys.C 44, 114103 (2020)

L.Ou, Z.-G.Xiao

Orientation dichroism effect of proton scattering on deformed nuclei

NUCLEAR REACTIONS 238U(p, p), (p, p'), E=100, 200, 300 MeV; calculated σ(θ), elastic and quasi-elastic (inelastic) scattering σ using ImQMD model.

doi: 10.1088/1674-1137/abadf1
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2020ZH03      Phys.Rev.Lett. 124, 032501 (2020)

S.J.Zhu, E.H.Wang, J.H.Hamilton, A.V.Ramayya, Y.X.Liu, N.T.Brewer, Y.X.Luo, J.O.Rasmussen, Z.G.Xiao, Y.Huang, G.M.Ter-Akopian, Ts.Oganessian

Coexistence of Reflection Asymmetric and Symmetric Shapes in 144Ba

RADIOACTIVITY 252Cf(SF); measured fission products, Eγ, Iγ, γ-γ-γ-coin. 144Ba; deduced γ-ray energies, J, π, high-spin states, quadrupole band structure.

doi: 10.1103/PhysRevLett.124.032501
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2018ER01      Eur.Phys.J. A 54, 145 (2018)

A.Ertoprak, B.Cederwall, C.Qi, M.Doncel, U.Jakobsson, B.M.Nyako, G.Jaworski, P.Davies, G.de France, I.Kuti, D.R.Napoli, R.Wadsworth, S.S.Ghugre, R.Raut, B.Akkus, H.Al-Azri, A.Algora, G.de Angelis, A.Atac, T.Back, A.Boso, E.Clement, D.M.Debenham, Zs.Dombradi, S.Erturk, A.Gadea, F.Ghazi Moradi, A.Gottardo, T.Huyuk, E.Ideguchi, H.Li, C.Michelagnoli, V.Modamio, J.Nyberg, M.Palacz, C.M.Petrache, F.Recchia, M.Sandzelius, M.Siciliano, J.Timar, J.J.Valiente-Dobon, Z.G.Xiao

M1 and E2 transition rates from core-excited states in semi-magic 94Ru

NUCLEAR REACTIONS 58Ni(40Ca, 4p)94Ru, E=128 MeV; measured Eγ, Iγ(θ), γγ-coin, Doppler-broadened line shapes using EXOGAM spectrometer array of 11 Compton-suppressed HPGe; deduced 94Ru γ-ray spectra, lineshapes, γ-ray transitions between discrete states, γ intensities, B(M1), B(E2), T1/2 of discrete dicrete high-spin states.

doi: 10.1140/epja/i2018-12581-7
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2018XU08      Eur.Phys.J. A 54, 83 (2018)

Q.Xu, Z.G.Xiao, S.J.Zhu, C.Qi, H.Jia, B.Qi, R.S.Wang, W.J.Cheng, Y.Zhang, H.Yi, L.M.Lu, Y.J.Wang, H.J.Li, Y.Huang, Z.Zhang, X.G.Wu, C.B.Li, Y.Zheng, Q.M.Chen, W.K.Zhou, G.S.Li

Investigation of high spin states in 133Cs

NUCLEAR REACTIONS 130Te(7Li, 4n), E=38 MeV; measured in-beam Eγ, Iγ(θ), γγ-coin using 12 Compton-suppressed Ge detectors at HI-13 Tandem at CIAE (China Institute of Atomic Energy). 133Cs; deduced level scheme, levels, J, π up to high spin of 31/2, rotational bands, γ transition intensities; updated systematics of 2+ states in N=78 even-even isotopes of A=130-134. 133Cs, 132Xe; calculated levels, J, π, B(M1)/B(E2), moments of inertia using large-scale shell model; compared to experimental data.

doi: 10.1140/epja/i2018-12520-8
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2017ER02      Acta Phys.Pol. B48, 325 (2017)

A.Ertoprak, B.Cederwall, U.Jakobsson, B.M.Nyako, J.Nyberg, P.Davies, M.Doncel, G.De France, I.Kuti, D.R.Napoli, R.Wadsworth, S.S.Ghugre, R.Raut, B.Akkus, H.Al-Azri, A.Algora, G.de Angelis, A.Atac, T.Back, A.Boso, E.Clement, D.M.Debenham, Zs.Dombradi, S.Erturk, A.Gadea, F.Ghazi Moradi, A.Gottardo, T.Huyuk, E.Ideguchi, G.Jaworski, H.Li, C.Michelagnoli, V.Modamio, M.Palacz, C.M.Petrache, F.Recchia, M.Sandzelius, M.Siciliano, J.Timar, J.J.Valiente-Dobon, Z.G.Xiao

Lifetime Measurements with the Doppler Shift Attenuation Method Using a Thick Homogeneous Production Target-Verification of the Method

NUCLEAR REACTIONS 58Ni(40Ca, 4p)94Ru, E=128 MeV; measured Eγ, Iγ, γγ-coin using EXOGAM Ge array (11 large clover detectors) shielded by BGO scintillators, fusion products using DIAMANT CsI(Tl) charged-particle system (80 scintillators), En, In using Neutron Wall liquid scintillator array; deduced 94Ru T1/2 using DSAM (Doppler Shift Attenuation Method), especially T1/2 of19+ to 18+, 17+ to 16+, 15+ to 14+ M1 levels.

doi: 10.5506/APhysPolB.48.325
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2017HU09      J.Phys.(London) G44, 095101 (2017)

Y.Huang, S.J.Zhu, J.H.Hamilton, Y.J.Chen, E.H.Wang, A.V.Ramayya, Z.G.Xiao, H.J.Li, Y.X.Luo, J.O.Rasmussen, G.M.Ter-Akopian, Y.T.Oganessian

Reinvestigation of s = ±i octupole bands in neutron-rich 141Xe

RADIOACTIVITY 252Cf(SF); measured decay products, Eγ, Iγ. 141Xe; deduced high spin energy levels, J, π, multiplicity, B(E1)/B(E2). Comparison with shell model calculations, available data.

doi: 10.1088/1361-6471/aa8318
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Data from this article have been entered in the XUNDL database. For more information, click here.


2016GA21      Eur.Phys.J. A 52, 177 (2016)

P.Gasik, K.Piasecki, N.Herrmann, Y.Leifels, T.Matulewicz, A.Andronic, R.Averbeck, V.Barret, Z.Basrak, N.Bastid, M.L.Benabderrahmane, M.Berger, P.Buehler, M.Cargnelli, R.Caplar, P.Crochet, O.Czerwiakowa, I.Deppner, P.Dupieux, M.Dzelalija, L.Fabbietti, Z.Fodor, I.Gasparic, Y.Grishkin, O.N.Hartmann, K.D.Hildenbrand, B.Hong, T.I.Kang, J.Kecskemeti, Y.J.Kim, M.Kirejczyk, M.Kis, P.Koczon, R.Kotte, A.Lebedev, A.Le Fevre, J.L.Liu, X.Lopez, V.Manko, J.Marton, R.Munzer, M.Petrovici, F.Rami, A.Reischl, W.Reisdorf, M.S.Ryu, P.Schmidt, A.Schuttauf, Z.Seres, B.Sikora, K.S.Sim, V.Simion, K.Siwek-Wilczynska, V.Smolyankin, K.Suzuki, Z.Tyminski, P.Wagner, I.Weber, E.Widmann, K.Wisniewski, Z.G.Xiao, I.Yushmanov, Y.Zhang, A.Zhilin, V.Zinyuk, J.Zmeskal

Strange meson production in Al+Al collisions at 1.9 A GeV

doi: 10.1140/epja/i2016-16177-y
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2016HU09      Phys.Rev. C 93, 064315 (2016)

Y.Huang, Z.G.Xiao, S.J.Zhu, C.Qi, Q.Xu, W.J.Cheng, H.J.Li, L.M.Lyu, R.S.Wang, W.H.Yan, H.Yi, Y.Zhang, Q.M.Chen, C.Y.He, S.P.Hu, C.B.Li, H.W.Li, P.W.Luo, X.G.Wu, Y.H.Wu, Y.Zheng, J.Zhong

High-spin structures in the 129Xe nucleus

NUCLEAR REACTIONS 124Sn(9Be, 4n), E=36 MeV; measured Eγ, Iγ, γγ-coin, γγ(θ)(DCO) at HI-13 tandem accelerator facility of the CIAE-Beijing. 129Xe; deduced high-spin levels, J, π, band structures, configurations, multipolarities, B(M1)/B(E2), staggering parameter, moments of inertia plots. Systematics of level energies and bands in 125,127,129,131,133Xe. Comparisons with total Routhian surface and quasiparticle triaxial rotor model calculations.

doi: 10.1103/PhysRevC.93.064315
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2016HU10      Phys.Rev. C 93, 064321 (2016)

Y.Huang, S.J.Zhu, J.H.Hamilton, E.H.Wang, A.V.Ramayya, Z.G.Xiao, H.J.Li, Y.X.Luo, J.O.Rasmussen, G.M.Ter-Akopian, Yu.Ts.Oganessian

Proposed s =±1 octupole bands in 140Xe

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin, γγ(θ) using Gammasphere array. 140Xe; deduced high-spin levels, J, π, s=+1 and s=-1 parity-doublet octupole bands, multipolarities, multipole mixing ratios, B(E1)/B(E2) ratios, octupole correlations, moments of inertia plots. Level systematics of 140Xe, 143Ba and 148Ce. 106,107,108,109,110Ru; observed γ rays.

doi: 10.1103/PhysRevC.93.064321
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2016HU16      Int.J.Mod.Phys. E25, 1650064 (2016)

Y.Huang, S.J.Zhu, J.H.Hamilton, A.V.Ramayya, E.H.Wang, Y.X.Liu, Y.Sun, J.K.Hwang, Z.G.Xiao, H.J.Li, Y.X.Luo, J.O.Rasmussen, G.M.Ter-Akopian, Yu.Ts.Oganessian

Reinvestigation of two-phonon γ-vibrational band in neutron-rich 114Pd

RADIOACTIVITY 252Cf(SF); measured decay products, Eγ.Iγ. 114Pd; deduced energy levels, level scheme, J, π, γ-bands. Comparison with theoretical calculations.

doi: 10.1142/S0218301316500646
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Data from this article have been entered in the XUNDL database. For more information, click here.


2016LI12      Phys.Rev.Lett. 116, 112501 (2016)

C.Liu, S.Y.Wang, R.A.Bark, S.Q.Zhang, J.Meng, B.Qi, P.Jones, S.M.Wyngaardt, J.Zhao, C.Xu, S.-G.Zhou, S.Wang, D.P.Sun, L.Liu, Z.Q.Li, N.B.Zhang, H.Jia, X.Q.Li, H.Hua, Q.B.Chen, Z.G.Xiao, H.J.Li, L.H.Zhu, T.D.Bucher, T.Dinoko, J.Easton, K.Juhasz, A.Kamblawe, E.Khaleel, N.Khumalo, E.A.Lawrie, J.J.Lawrie, S.N.T.Majola, S.M.Mullins, S.Murray, J.Ndayishimye, D.Negi, S.P.Noncolela, S.S.Ntshangase, B.M.Nyako, J.N.Orce, P.Papka, J.F.Sharpey-Schafer, O.Shirinda, P.Sithole, M.A.Stankiewicz, M.Wiedeking

Evidence for Octupole Correlations in Multiple Chiral Doublet Bands

NUCLEAR REACTIONS 70Zn(12C, 3np), E=60, 65 MeV; measured reaction products, Eγ, Iγ, γ-γ-coin.; deduced energy levels, J, π, medium- amd high-spin states, yrast positive- and negative-parity bands. Comparison with microscopic multidimensionally-constrained covariant density functional theory and triaxial particle rotor model calculations.

doi: 10.1103/PhysRevLett.116.112501
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2016LI13      Phys.Rev. C 93, 034309 (2016)

H.J.Li, B.Cederwall, M.Doncel, J.Peng, Q.B.Chen, S.Q.Zhang, P.W.Zhao, J.Meng, T.Back, U.Jakobsson, K.Auranen, S.Bonig, M.Drummond, T.Grahn, P.Greenlees, A.Herzan, D.T.Joss, R.Julin, S.Juutinen, J.Konki, T.Kroll, M.Leino, C.McPeake, D.O'Donnell, R.D.Page, J.Pakarinen, J.Partanen, P.Peura, P.Rahkila, P.Ruotsalainen, M.Sandzelius, J.Saren, B.Saygi, C.Scholey, J.Sorri, S.Stolze, M.J.Taylor, A.Thornthwaite, J.Uusitalo, Z.G.Xiao

Lifetime measurements in 166Re: Collective versus magnetic rotation

NUCLEAR REACTIONS 92Mo(78Kr, n3p), E=380 MeV; measured Eγ, Iγ, recoil-gated γγ-coin, level half-lives by recoil distance Doppler-shift (RDDS) method and differential decay-curve analysis using JUROGAM-II array for γ detection, RITU separator, and GREAT spectrometer at Jyvaskyla accelerator facility. 166Re; deduced high-spin levels, J, π, B(M1), B(E2), B(E1), B(M1)/B(E2) configurations, alignments; discussed collective versus magnetic rotation; calculated total Routhian surface plot. Tilted-axis cranking calculations based on a relativistic mean-field approach (TAC-RMF).

doi: 10.1103/PhysRevC.93.034309
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2015LI15      Eur.Phys.J. A 51, 60 (2015)

H.J.Li, Z.G.Xiao, S.J.Zhu, C.Qi, E.Y.Yeoh, Z.Zhang, R.S.Wang, H.Yi, W.H.Yan, Q.Xu, X.G.Wu, C.Y.He, Y.Zheng, G.S.Li, C.B.Li, H.W.Li, J.J.Liu, S.P.Hu, J.L.Wang, S.H.Yao

Reinvestigation of the collective band structures in odd-odd 138Pm nucleus

NUCLEAR REACTIONS 124Te(19F, 5n), E=99-105 MeV; measured Eγ, Iγ(θ), γγ-coin using Compton-suppressed HPGe, planar HPGe and clover detector; deduced γ transitions, γ transition multipolarity, levels, J, π, high-spin states, rotational bands, yrast band using RADWARE software package for γγ-coin; calculated intrinsic configurations using TRS (total Routhian surface), inertia moments, B(M1)/B(E2), deformation using triaxial quasiparticle-rotor model.

doi: 10.1140/epja/i2015-15060-9
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2015LI17      Phys.Rev. C 91, 054314 (2015)

H.J.Li, Z.G.Xiao, S.J.Zhu, M.Patial, C.Qi, B.Cederwall, Z.Zhang, R.S.Wang, H.Yi, W.H.Yan, W.J.Cheng, Y.Huang, L.M.Lyu, Y.Zhang, X.G.Wu, C.Y.He, Y.Zheng, G.S.Li, C.B.Li, H.W.Li, J.J.Liu, P.W.Luo, S.P.Hu, J.L.Wang, Y.H.Wu

Collective band structures in the 99Tc nucleus

NUCLEAR REACTIONS 96Zr(7Li, 4n), E=35 MeV; measured Eγ, Iγ, γγ-coin, γγ(θ)(DCO) at HI-13 tandem accelerator of CIAE-Beijing. 99Tc; deduced levels, J, π, multipolarity, rotational bands, configuration, staggering parameter, alignments, B(M1)/B(E2) ratios, large triaxiality at medium to high spins. Total Routhian surface calculations. Comparison with cranked shell model and particle-rotor model calculations. Systematics of band structures in 95,97,99,101,103Tc.

doi: 10.1103/PhysRevC.91.054314
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2015LI24      Phys.Rev. C 92, 014326 (2015)

H.J.Li, B.Cederwall, T.Back, C.Qi, M.Doncel, U.Jakobsson, K.Auranen, S.Bonig, M.C.Drummond, T.Grahn, P.Greenlees, A.Herzan, R.Julin, S.Juutinen, J.Konki, T.Kroll, M.Leino, C.McPeake, D.O'Donnell, R.D.Page, J.Pakarinen, J.Partanen, P.Peura, P.Rahkila, P.Ruotsalainen, M.Sandzelius, J.Saren, B.Saygi, C.Scholey, J.Sorri, S.Stolze, M.J.Taylor, A.Thornthwaite, J.Uusitalo, Z.G.Xiao

Recoil-decay tagging spectroscopy of 16274W88

NUCLEAR REACTIONS 92Mo(78Kr, 2α), E=380 MeV; measured Eγ, Iγ, Eα, Iα, αγ-, γγ-coin, (recoil)αα-correlations, level half-lives using JUROGAM-II array, RITU separator and GREAT spectrometer at K-130 cyclotron facility of University of Jyvaskyla. Recoil-decay tagging method. 162W; deduced high-spin levels, J, π, multipolarity, yrast band, configuration, Routhians, alignments; calculated total Routhian Surfaces (TRS) using cranked shell model, α-formation probability. Systematics of experimental Routhians and aligned angular momenta in 162,164W and 160Hf. Systematics of energies of yrast bands in 158,160,162,164,166,168W.

RADIOACTIVITY 162W, 166Os(α); measured Eα, Iα, half-lives of 166Os and 162W ground states.

doi: 10.1103/PhysRevC.92.014326
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2015LI26      Phys.Rev. C 92, 014310 (2015)

H.J.Li, M.Doncel, M.Patial, B.Cederwall, T.Back, U.Jakobsson, K.Auranen, S.Bonig, M.Drummond, T.Grahn, P.Greenlees, A.Herzan, D.T.Joss, R.Julin, S.Juutinen, J.Konki, T.Kroll, M.Leino, C.McPeake, D.O'Donnell, R.D.Page, J.Pakarinen, J.Partanen, P.Peura, P.Rahkila, P.Ruotsalainen, M.Sandzelius, J.Saren, B.Saygi, C.Scholey, J.Sorri, S.Stolze, M.J.Taylor, A.Thornthwaite, J.Uusitalo, Z.G.Xiao

First identification of rotational band structures in 75166Re91

NUCLEAR REACTIONS 92Mo(78Kr, n3p), E=380 MeV; measured Eγ, Iγ, γγ-coin, γγ(θ)(DCO), reaction products using JUROGAM II γ-ray spectrometer, RITU separator, GREAT spectrometer and Si detectors at Jyvaskyla accelerator facility. Recoil-decay tagging technique. 166Re; deduced high-spin levels, J, π, rotational bands, multipolarity, Nilsson configuration, B(M1)/B(E2), alignment plots, anomalous signature inversion, energy staggering. Calculated total Routhian surfaces (TRS). Cranked shell model and particle-rotor mode calculations.

doi: 10.1103/PhysRevC.92.014310
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2015XU09      Phys.Rev. C 91, 061303 (2015)

C.Xu, X.Q.Li, J.Meng, S.Q.Zhang, H.Hua, S.Y.Wang, B.Qi, C.Liu, Z.G.Xiao, H.J.Li, L.H.Zhu, Z.Shi, Z.H.Li, Y.L.Ye, D.X.Jiang, J.J.Sun, Z.H.Zhang, Y.Shi, P.W.Zhao, Q.B.Chen, W.Y.Liang, R.Han, C.Y.Niu, C.G.Li, C.G.Wang, Z.H.Li, S.M.Wyngaardt, R.A.Bark, P.Papka, T.D.Bucher, A.Kamblawe, E.Khaleel, N.Khumalo, E.A.Lawrie, J.J.Lawrie, P.Jones, S.M.Mullins, S.Murray, M.Wiedeking, J.F.Sharpey-Schafer, S.N.T.Majola, J.Ndayishimye, D.Negi, S.P.Noncolela, S.S.Ntshangase, O.Shirinda, P.Sithole, M.A.Stankiewicz, J.N.Orce, T.Dinoko, J.Easton, B.M.Nyako, K.Juhasz

Spectroscopy of 76Se: Prolate-to-oblate shape transition

NUCLEAR REACTIONS 70Zn(12C, 2nα), E=60, 65 MeV; measured Eγ, Iγ, γγ-, (particle)γγ-coin using AFRODITE array for γ rays and DIAMANT array for charged particles at iThemba LABS. 76Se; deduced high-spin levels, J, π, bands, configuration, kinematic and dynamic moments of inertia, band crossing frequency, shape transition. Comparison with cranked shell-model calculations. systematics of band crossings in 70,72,74,76,78,80Se, 72,74,76,78,80,82Kr.

doi: 10.1103/PhysRevC.91.061303
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2014BA29      Int.J.Mod.Phys. E23, 1461001 (2014)

R.A.Bark, E.O.Lieder, R.M.Lieder, E.A.Lawrie, J.J.Lawrie, S.P.Bvumbi, N.Y.Kheswa, S.S.Ntshangase, T.E.Madiba, P.L.Masiteng, S.M.Mullins, S.Murray, P.Papka, O.Shirinda, Q.B.Chen, S.Q.Zhang, Z.H.Zhang, P.W.Zhao, C.Xu, J.Meng, D.G.Roux, Z.P.Li, J.Peng, B.Qi, S.Y.Wang, Z.G.Xiao

Studies of chirality in the mass 80, 100 and 190 regions

NUCLEAR REACTIONS 96Zr(14N, 4n)106Ag, E not given; measured reaction products, Eγ, Iγ; deduced levels, J, π, T1/2, chiral bands, B(M1), B(E2). Comparison with particle-rotor calculations.

doi: 10.1142/S0218301314610011
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2014LI19      Phys.Rev.Lett. 112, 202502 (2014)

E.O.Lieder, R.M.Lieder, R.A.Bark, Q.B.Chen, S.Q.Zhang, J.Meng, E.A.Lawrie, J.J.Lawrie, S.P.Bvumbi, N.Y.Kheswa, S.S.Ntshangase, T.E.Madiba, P.L.Masiteng, S.M.Mullins, S.Murray, P.Papka, D.G.Roux, O.Shirinda, Z.H.Zhang, P.W.Zhao, Z.P.Li, J.Peng, B.Qi, S.Y.Wang, Z.G.Xiao, C.Xu

Resolution of Chiral Conundrum in 106Ag: Doppler-Shift Lifetime Investigation

NUCLEAR REACTIONS 96Zr(14N, 4n), E=71 MeV; measured reaction products, Eγ, Iγ, γ-γ-coin.; deduced level scheme, J, π, high spin negative parity bands, B(M1), B(E2). Particle-rotor model calculations.

doi: 10.1103/PhysRevLett.112.202502
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2014LI46      Phys.Rev. C 90, 047303 (2014)

H.J.Li, S.J.Zhu, J.H.Hamilton, E.H.Wang, A.V.Ramayya, Y.J.Chen, J.K.Hwang, J.Ranger, S.H.Liu, Z.G.Xiao, Y.Huang, Z.Zhang, Y.X.Luo, J.O.Rasmussen, I.Y.Lee, G.M.Ter-Akopian, Yu.Ts.Oganessian, W.C.Ma

Reinvestigation of high spin states and proposed octupole correlations in 147Ce

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, triple- and four-fold γγ-coin using Gammasphere detector array at LBNL facility. 147Ce; deduced high-spin levels, bands, B(E1)/B(E2) ratios, octupole correlations. Comparison with reflection-asymmetric shell-model calculations. Systematics of octupole band structures in 145Ba, 147Ce, and 149Nd.

doi: 10.1103/PhysRevC.90.047303
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2014WA23      Phys.Rev. C 89, 064613 (2014)

R.S.Wang, Y.Zhang, Z.G.Xiao, J.L.Tian, Y.X.Zhang, Q.H.Wu, L.M.Duan, G.M.Jin, R.J.Hu, S.F.Wang, Z.Y.Li, H.W.Wang, Z.Zhang, H.Yi, H.J.Li, W.J.Cheng, Y.Huang, L.M.Lu

Time-dependent isospin composition of particles emitted in fission events following 40Ar + 197Au at 35 MeV/u

NUCLEAR REACTIONS 197Au(40Ar, F), E=35 MeV/nucleon; measured particle spectra, (fission fragment)(light charged particles)-coin, mass asymmetry, double differential cross sections for proton, deuteron and triton at HRIFL-Lanzhou. Folding-angle method for reconstruction of fission events. Dependence of N/Z on the parameterization of the symmetry energy. Comparison with improved quantum molecular dynamics (ImQMD) transport-model calculations.

doi: 10.1103/PhysRevC.89.064613
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2014XI03      Eur.Phys.J. A 50, 37 (2014)

Z.-G.Xiao, G.-C.Yong, L.-W.Chen, B.-A.Li, M.Zhang, G.-Q.Xiao, N.Xu

Probing nuclear symmetry energy at high densities using pion, kaon, eta and photon productions in heavy-ion collisions

doi: 10.1140/epja/i2014-14037-6
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2013LI24      Phys.Rev. C 87, 057303 (2013)

H.J.Li, Z.G.Xiao, S.J.Zhu, E.Y.Yeoh, Y.X.Liu, Y.Sun, Z.Zhang, R.S.Wang, H.Yi, W.H.Yan, Q.Xu, X.G.Wu, C.Y.He, Y.Zheng, G.S.Li, C.B.Li, H.W.Li, J.J.Liu, S.P.Hu, J.L.Wang, S.H.Yao

Multiphonon γ-vibrational bands in the γ-soft nucleus 138Nd

NUCLEAR REACTIONS 124Te(19F, 4np), E=103 MeV; measured Eγ, Iγ, γγ-coin, γγ(θ)(DCO) at CIAE facility. 138Nd; deduced levels, J, π, multipolarity, multiphonon γ-vibrational bands, γ softness; calculated bandhead energies as a function of triaxiality. Comparison with cranked shell-model and, triaxial projected shell-model calculations. Systematics of bandhead energies of one- and two-γ vibrational bands in 104,106Mo, 138Nd, 154Gd, 168Er.

doi: 10.1103/PhysRevC.87.057303
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2013LI52      Phys.Rev. C 88, 054311 (2013)

H.J.Li, S.J.Zhu, J.H.Hamilton, A.V.Ramayya, J.K.Hwang, Y.X.Liu, Y.Sun, Z.G.Xiao, E.H.Wang, J.M.Eldridge, Z.Zhang, Y.X.Luo, J.O.Rasmussen, I.Y.Lee, G.M.Ter-Akopian, A.V.Daniel, Yu.Ts.Oganessian, W.C.Ma

Identification of multi-phonon γ-vibrational bands in odd-Z 105Nb

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin, three and four-fold γγ-coin using Gammasphere array at LBNL facility. 105Nb; deduced high-spin levels, J, π, multi-phonon γ-vibrational bands, alignment plots; calculated total Routhian surfaces (TRS) with cranked shell model. Comparison with triaxial projected shell model calculations. Systematics of level energies and bandhead energies for ground, one-phonon and two-phonon bands in 103,105Nb, 104,105,106,108Mo, 107,109Tc, 108,110,112,114Ru.

doi: 10.1103/PhysRevC.88.054311
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2012LI54      Phys.Rev. C 86, 067302 (2012)

H.J.Li, S.J.Zhu, J.H.Hamilton, A.V.Ramayya, J.K.Hwang, Z.G.Xiao, M.Sakhaee, J.Y.Guo, S.W.Chen, N.T.Brewer, S.H.Liu, K.Li, E.Y.Yeoh, Z.Zhang, Y.X.Luo, J.O.Rasmussen, I.Y.Lee, G.Ter-Akopian, A.Daniel, Yu.Ts.Oganessian, W.C.Ma

Identification of a new side-band and proposed octupole correlations in very neutron-rich 152Ce

RADIOACTIVITY 252Cf(SF); measured prompt γ spectrum, Eγ, Iγ, γγ-coin using Gammasphere array at LBNL. 152Ce; deduced high-spin levels, J, p, rotational bands, β2 and β3 deformations, B(E1)/B(E2) ratios, moments of inertia plots, octupole band with s=+1. Comparison with calculations in a reflection asymmetric relativistic mean-field (RAS-RMF) approach. Calculated β2 versus β3 contour plot.

doi: 10.1103/PhysRevC.86.067302
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2012YE06      Phys.Rev. C 85, 064322 (2012)

E.Y.Yeoh, S.J.Zhu, J.G.Wang, Z.G.Xiao, M.Zhang, W.H.Yan, R.S.Wang, Q.Xu, X.G.Wu, C.Y.He, G.S.Li, Y.Zheng, C.B.Li, X.P.Cao, S.P.Hu, S.H.Yao, B.B.Yu

High-spin structures in the 139Pr nucleus

NUCLEAR REACTIONS 124Sn(19F, 4n)139Pr, E=80 MeV; measured Eγ, Iγ, γγ-coin, DCO. 139Pr; deduced high-spin levels, J, π, bands, configurations, multipolarity; calculated total Routhian surface. Systematics of the low-spin levels in N=80 isotones of 137La, 136Ba, 138Ce, 139Pr, 140Nd, 141Pm; and moments of inertia for bands in 131,137La, 137,139Pr, 132Ba, 134Ce.

doi: 10.1103/PhysRevC.85.064322
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2012ZH03      Phys.Rev. C 85, 014330 (2012)

S.J.Zhu, M.Sakhaee, J.H.Hamilton, A.V.Ramayya, N.T.Brewer, J.K.Hwang, S.H.Liu, E.Y.Yeoh, Z.G.Xiao, Q.Xu, Z.Zhang, Y.X.Luo, J.O.Rasmussen, I.Y.Lee, K.Li, W.C.Ma

Observation of new levels and proposed octupole correlations in neutron-rich 150Ce

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin, γγ(θ) using Gammasphere array. 150Ce; deduced levels, J, π, multipolarity, high-spin rotational bands, B(E1)/B(E2) ratios, octupole bands. Systematics of octupole bands and moments of inertia plots in 144,146,148,150Ce.

doi: 10.1103/PhysRevC.85.014330
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2011FU11      Phys.Rev. C 84, 037603 (2011)

Y.Fu, D.Q.Fang, Y.G.Ma, X.Z.Cai, W.D.Tian, H.W.Wang, W.Guo, G.H.Liu, C.W.Ma, R.R.Fan, F.Fu, H.Gao, Q.Gao, W.T.Guo, J.L.Han, Z.G.Hu, T.H.Huang, F.Jia, B.Li, X.G.Lei, Z.Y.Sun, M.Wang, J.S.Wang, Z.G.Xiao, Z.G.Xu, X.W.Yao, H.B.Zhang, X.H.Zhang, C.Zheng, H.S.Xu, G.Q.Xiao, W.L.Zhan

Measurement of the longitudinal momentum distribution of 30S after one-proton removal from 31Cl

NUCLEAR REACTIONS 12C(31Cl, 30S), E=44 MeV/nucleon; measured particle, spectra, TOF at RIBLL facility. 30S; deduced longitudinal fragment momentum distribution. 31Cl; calculated proton density distributions; deduced configuration of valence proton Few-body Glauber model analysis.

doi: 10.1103/PhysRevC.84.037603
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2011GU12      Phys.Rev. C 83, 064303 (2011)

L.Gu, S.J.Zhu, J.G.Wang, E.Y.Yeoh, Z.G.Xiao, S.Q.Zhang, J.Meng, M.Zhang, Y.Lou, H.B.Ding, Q.Xu, L.H.Zhu, X.G.Wu, C.Y.He, G.S.Li, L.L.Wang, Y.Zheng, B.Zhang

Observation of high-spin oblate band structures in 141Pm

NUCLEAR REACTIONS 126Te(19F, 4n), E=90 MeV; measured Eγ, Iγ, γγ-coin, DCO. 141Pm; deduced levels, J, π, high-spin oblate bands, moments of inertia, multipolarity. Comparison with MRPM (triaxial n-particle-n-hole particle rotor model) calculations; and with systematics of moments of inertia plots for 132Ba, 131,136La and 134,136Ce.

doi: 10.1103/PhysRevC.83.064303
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2011YE03      Phys.Rev. C 83, 054317 (2011)

E.Y.Yeoh, S.J.Zhu, J.H.Hamilton, K.Li, A.V.Ramayya, Y.X.Liu, J.K.Hwang, S.H.Liu, J.G.Wang, Y.Sun, J.A.Sheikh, G.H.Bhat, Y.X.Luo, J.O.Rasmussen, I.Y.Lee, H.B.Ding, L.Gu, Q.Xu, Z.G.Xiao, W.C.Ma

High-spin structure and multiphonon γ vibrations in very neutron-rich 114Ru

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin using Gammasphere array. 114Ru; deduced levels, J, π, bands, alignments. Systematics of level energies for 108,110,112,114Ru nuclei. Calculated Routhians using cranked-shell model with triaxial deformation parameters. Triaxial projected shell-model calculations for γ-vibrational band.

doi: 10.1103/PhysRevC.83.054317
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2010DI09      Chin.Phys.Lett. 27, 072501 (2010)

H.-B.Ding, S.-J.Zhu, J.-G.Wang, L.Gu, Q.Xu, Z.-G.Xiao, E.-Y.Yeoha, M.Zhang, L.-H.Zhu, X.-G.Wu, Y.Liu, C.-Y.He, L.-L.Wang, b.Pan, G.-S.Li

Proposed Chiral Doublet Bands in 98Tc

NUCLEAR REACTIONS 96Zr(6Li, 4n)98Tc, E=35 MeV; measured Eγ, Iγ, γ-γ-coin.; deduced high-spin states, level scheme, J, π, energies, B(M1)/B(E2) ratios.

doi: 10.1088/0256-307X/27/7/072501
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2010RE08      Nucl.Phys. A848, 366 (2010)

W.Reisdorf, M.S.Ryu, Z.Seres, B.Sikora, K.S.Sim, V.Simion, K.Siwek-Wilczynska, V.Smolyankin, G.Stoicea, Z.Tyminski, K.Wisniewski, D.Wohlfarth, Z.G.Xiao, H.S.Xu, I.Yushmanov, A.Zhilin, for the FOPI Collaboration

Systematics of central heavy ion collisions in the 1A GeV regime

doi: 10.1016/j.nuclphysa.2010.09.008
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2010TI03      Int.J.Mod.Phys. E19, 1076 (2010)

W.D.Tian, H.W.Wang, Y.G.Ma, G.H.Liu, C.W.Ma, Q.M.Su, T.Z.Yan, Y.Shi, X.Z.Cai, D.Q.Fang, J.G.Chen, W.Guo, K.Wang, H.S.Xu, Z.G.Hu, Z.G.Xiao, Z.Y.Sun, Z.Y.Guo, G.Q.Xiao, X.G.Lei, B.Li, X.H.Yuan, H.B.Zhang, X.W.Yao, W.T.Guo, X.H.Zhang, Q.Gao, C.Zheng, H.Gao, Z.G.Xu, F.Fu, J.L.Han, R.R.Fan

Projectile fragmentation of 36, 40Ar induced reactions

NUCLEAR REACTIONS 64Ni(36Ar, X), (40Ar, X), E=50 MeV/nucleon; measured reaction products; deduced fragment yields, σ(θ), isoscaling parameters. Comparison with empirical models.

doi: 10.1142/S0218301310015515
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2010TI05      Int.J.Mod.Phys. E19, 1815 (2010)

W.D.Tian, Y.G.Ma, H.W.Wang, G.H.Liu, C.W.Ma, Q.M.Su, T.Z.Yan, X.Z.Cai, D.Q.Fang, J.G.Chen, W.Guo, Y.Shi, K.Wang, H.S.Xu, Z.G.Hu, Z.G.Xiao, Z.Y.Sun, Z.Y.Guo, G.Q.Xiao, X.G.Lei, B.Li, X.H.Yuan, H.B.Zhang, X.W.Yao, W.T.Guo, X.H.Zhang, Q.Gao, C.Zheng, H.Gao, Z.G.Xu, F.Fu, J.L.Han, R.R.Fan

Projectile fragmentation of 36-40Ar induced reactions

NUCLEAR REACTIONS 64Ni(36Ar, X), (40Ar, X), E=50 MeV/nucleon; measured reaction products; deduced fragment yields, σ. Comparison with EPAX and SAA models.

doi: 10.1142/S0218301310016247
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2010WA26      Nucl.Phys. A834, 94c (2010)

J.-G.Wang, S.-J.Zhu, J.H.Hamilton, H.-B.Ding, L.Gu, A.V.Ramayya, J.K.Hwang, S.H.Liu, K.Li, Y.X.Luo, J.O.Rasmussen, I.Y.Lee, Q.Xu, E.-Y.Yeoh, Z.G.Xiao, W.C.Ma

Identification of Two-Phonon γ-Vibrational Bands in Odd-A Nuclei at A ∼ 100 Region

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin. 103Nb, 105Mo, 107Tc; deduced levels, J, π, high-spin states, 2γ-vibrational bands.

doi: 10.1016/j.nuclphysa.2010.01.028
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2010WA37      J.Phys.(London) G37, 125107 (2010)

J.G.Wang, S.J.Zhu, L.Gu, Z.G.Xiao, E.Y.Yeoh, M.Zhang, Y.Liu, H.B.Ding, Q.Xu, L.H.Zhu, X.G.Wu, Y.S.Chen, C.Y.He, G.S.Li, L.L.Wang, Y.Zhang, B.Zhang

High-spin states and collective band structures in the odd-odd 140Pm nucleus

NUCLEAR REACTIONS 126Te(19F, 5n), E=90 MeV; measured Eγ, Iγ, γ-γ-coin.; 140Pm deduced energies, level scheme, yrast bands, J, π, multipolarities. Comparison with TRS calculations.

doi: 10.1088/0954-3899/37/12/125107
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2010YE08      Phys.Rev. C 82, 027302 (2010)

E.Y.Yeoh, S.J.Zhu, J.H.Hamilton, A.V.Ramayya, Y.X.Liu, Y.Sun, J.K.Hwang, S.H.Liu, J.G.Wang, Y.X.Luo, J.O.Rasmussen, I.Y.Lee, H.B.Ding, L.Gu, Q.Xu, Z.G.Xiao

Identification of a quasiparticle band in very neutron-rich 104Zr

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin using Gammasphere array. 104Zr; deduced levels, J, π, bands, yrast structure, configurations. Comparison with projected shell model (PSM) calculations.

doi: 10.1103/PhysRevC.82.027302
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2010YE10      Eur.Phys.J. A 45, 147 (2010)

E.Y.Yeoh, S.J.Zhu, J.H.Hamilton, A.V.Ramayya, Y.C.Yang, Y.Sun, J.K.Hwang, S.H.Liu, J.G.Wang, Y.X.Luo, J.O.Rasmussen, I.Y.Lee, H.B.Ding, K.Li, L.Gu, Q.Xu, Z.G.Xiao, W.C.Ma

High-spin states and a new band based on the isomeric state in 152Nd

RADIOACTIVITY 252Cf(SF); measured prompt, β-delayed Eγ, Iγ, γγ-coin. 152Nd deduced levels, J, π, high-spin states, isomeric transition T1/2, band on isomeric state; calculated levels, J, π using projected shell model.

doi: 10.1140/epja/i2010-11001-6
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2010ZH36      Nucl.Phys. A834, 567c (2010)

M.Zhang, Z.-G.Xiao, B.-A.Li, L.-W.Chen, G.-C.Young, S.-J.Zhu

System size and beam energy effects on probing the high-density behavior of nuclear symmetry energy with pion ratio

NUCLEAR REACTIONS 48Ca(48Ca, π+), (48Ca, π-), 124Sn(124Sn, π+), (124Sn, π-), 197Au(197Au, π+), (197Au, π-), E=0.25-0.6 GeV/nucleon; measured pion production yield ratios; deduced radii, symmetry energy. Comparison with isobar model.

doi: 10.1016/j.nuclphysa.2010.01.093
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2010ZH43      Phys.Rev. C 82, 044602 (2010); Erratum Phys.Rev. C 82, 069904 (2010)

M.Zhang, Z.-G.Xiao, S.-J.Zhu

Tracing isospin with the π-+ ratio in central heavy ion collisions

NUCLEAR REACTIONS 96Ru(96Zr, X), 96Zr(96Ru, X), E=400 MeV/nucleon; calculated π-+ yield ratios and rapidity distributions using isospin-dependent quantum molecular dynamics (IQMD). Comparison with experimental data.

doi: 10.1103/PhysRevC.82.044602
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2009LI51      Phys.Rev. C 80, 054315 (2009)

Z.H.Li, J.L.Lou, Y.L.Ye, H.Hua, D.X.Jiang, X.Q.Li, S.Q.Zhang, T.Zheng, Y.C.Ge, Z.Kong, L.H.Lv, C.Li, F.Lu, F.Y.Fan, Z.Y.Li, Z.X.Cao, L.Y.Ma, Q.Faisal, H.S.Xu, Z.G.Hu, M.Wang, X.G.Lei, L.M.Duan, Z.G.Xiao, W.L.Zhan, G.Q.Xiao, T.H.Huang, F.Fu, X.H.Zhang, C.Zheng, Y.H.Yu, X.L.Tu, Y.P.Zhang, Y.Y.Yang, H.B.Zhang, B.Thang, Y.L.Tian, Z.Ouang, M.R.Huang, Z.G.Xu, K.Yue, Q.Gao

Experimental study of the β-delayed neutron decay of 21N

RADIOACTIVITY 21N(β-), (β-n) [from 9Be(26Mg, X), E=68.8 MeV]; measured Eγ, Iγ, Eβ, Iβ, En, In, βn-, βγ-, βγn-coin, half-lives and. delayed-neutron emission probabilities. 20,21O; deduced levels, J, π, branching ratios, logft values and B(GT). Comparison with shell model calculations. 20,21F, 20,21O(β-); measured Eγ.

NUCLEAR REACTIONS 9Be(26Mg, X), E=68.8 MeV; measured isotopic yields. 6He, 7,8,9Li, 9,10,11,12Be, 12,13,14,15,17B, 15,16,17,18,19C, 19,20,21N, 22,23O; measured yields.

doi: 10.1103/PhysRevC.80.054315
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2009WA10      Phys.Lett. B 675, 420 (2009)

J.-G.Wang, S.-J.Zhu, J.H.Hamilton, A.V.Ramayya, J.K.Hwang, S.H.Liu, K.Li, Y.X.Luo, J.O.Rasmussen, I.Y.Lee, H.-B.Ding, Q.Xu, L.Gu, E.-Y.Yeoh, Z.-G.Xiao, W.C.Ma

Identification of one-phonon and two-phonon γ-vibrational bands in odd-Z 103Nb nucleus

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin using Gammasphere array. 103Nb; deduced high-spin levels, J, π, vibrational band structure.

doi: 10.1016/j.physletb.2009.04.057
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2009ZH27      Phys.Rev. C 80, 034616 (2009)

M.Zhang, Z.-G.Xiao, B.-A.Li, L.-W.Chen, G.-C.Yong, S.-J.Zhu

Systematic study of the π-+ratio in heavy-ion collisions with the same neutron/proton ratio but different masses

doi: 10.1103/PhysRevC.80.034616
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2008LO06      Chin.Phys.Lett. 25, 1992 (2008)

J.-L.Lou, Z.-H.Li, Y.-L.Ye, D.-X.Jiang, H.Hua, X.-Q.Li, S.-Q.Zhang, T.Zheng, Y.-C.Ge, Z.Kong, L.-H.Lv, C.Li, F.Lu, F.-Y.Fan, Z.-Y.Li, Z.-X.Cao, L.-Y.Ma, Faisal, H.-S.Xu, Z.-G.Hu, M.Wang, X.-G.Lei, L.-M.Duan, Z.-G.Xiao, W.-L.Zhan, G.-Q.Xiao, T.-H.Huang, F.Fu, X.-H.Zhang, C.Zheng, Y.-H.Yu, X.-L.Tu, Y.-P.Zhang, Y.-Y.Yang, H.-B.Zhang, B.Tang, Y.-L.Tian, Y.-Z.Ou, M.-R.Huang, Z.-G.Xu, K.Yue, Q.Gao

The β Decay of 21N

RADIOACTIVITY 21N(β-) [from 9Be(26Mg, X), E=68.8 MeV/nucleon]; measured T1/2, Eβ, Iβ, Eγ, Iγ, En, In, βγ-, (n)β-coin.

doi: 10.1088/0256-307X/25/6/019
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2007XI04      J.Phys.(London) G34, S915 (2007)

Z.G.Xiao, X.Dong, F.Liu, X.F.Luo, K.J.Wu, H.S.Xu, N.Xu, W.L.Zhan

The equation of state study in UU collisions at CSR, Lanzhou

doi: 10.1088/0954-3899/34/8/S124
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2006OZ02      Nucl.Instrum.Methods Phys.Res. B247, 155 (2006)

A.Ozawa, Y.Z.Cai, Z.Q.Chen, M.Chiba, D.Q.Fang, Z.G.Guo, T.Izumikawa, J.X.Li, R.S.Mao, T.Ohnishi, W.Q.Shen, T.Suda, Z.Y.Sun, T.Suzuki, I.Tanihata, W.D.Tian, J.S.Wang, M.Wang, Y.B.Wei, G.Q.Xiao, Z.G.Xiao, T.Yamaguchi, Y.Yamaguchi, A.Yoshida, W.L.Zhan, H.Y.Zhang, T.Zheng, C.Zhong

Measurements of the interaction cross-sections for 14Be and 14, 15B as projectiles with a new scheme at RIBLL

NUCLEAR REACTIONS C(14Be, X), (14B, X), (15B, X), E ≈ 50 MeV/nucleon; measured interaction σ.

doi: 10.1016/j.nimb.2006.01.054
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetE1984.


2006WA17      Chin.Phys.Lett. 23, 1731 (2006)

Q.Wang, J.-L.Han, Z.-G.Xiao, H.-S.Xu, Z.-Yu.Sun, Z.-G.Hu, X.-Y.Zhang, H.-W.Wang, R.-S.Mao, X.-H.Yuan, Z.-G.Xu, T.-C.Zhao, H.-B.Zhang, H.-G.Xu, H.-R.Qi, Y.Wang, F.Jia, L.-J.Wu, X.-L.Ding, Q.Gao, H.Gao, S.-L.Li, Z.Bai, G.-Q.Xiao, G.-M.Jin, Z.-Z.Ren, S.-G.Zhou, Yu.-K.Sergey

Exotic Behaviour of Angular Dispersion of Weakly Bound Nucleus 17F at Small Angles

NUCLEAR REACTIONS 208Pb(17F, 17F), E=141 MeV; 208Pb(17O, 17O), E=128 MeV; measured σ(θ); deduced possible halo effects.

doi: 10.1088/0256-307X/23/7/021
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2006XI01      Phys.Lett. B 639, 436 (2006)

Z.G.Xiao, R.J.Hu, H.Y.Wu, G.M.Jin, Z.Y.Li, L.M.Duan, H.W.Wang, B.G.Zhang, S.F.Wang, Z.Y.Wei, H.S.Xu, Y.T.Zhu, S.L.Li, F.Fu, X.H.Yuan, Z.Q.Feng

System dependence of the correlation function of IMFs in 36Ar + 112, 124Sn at 35 MeV/u

NUCLEAR REACTIONS 112,124Sn(36Ar, X), E=35 MeV/nucleon; measured intermediate mass fragments charge, mass and velocity distributions and correlation function; deduced time sequence, related reaction mechanism features.

doi: 10.1016/j.physletb.2006.06.076
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2004ZH08      Nucl.Phys. A733, 235 (2004)

H.Q.Zheng, Z.Y.Zhou, G.Y.Qin, Z.G.Xiao, J.J.Wang, N.Wu

The k resonance in s wave πK scatterings

doi: 10.1016/j.nuclphysa.2003.12.021
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2003ZH49      Mod.Phys.Lett. A 18, 151 (2003)

H.Y.Zhang, W.Q.Shen, Y.G.Ma, X.Z.Cai, D.Q.Fang, C.Zhong, Y.B.Wei, J.G.Chen, X.F.Zhou, G.L.Ma, K.Wang, Z.Z.Ren, W.L.Zhan, Z.Y.Guo, G.Q.Xiao, H.S.Xu, J.S.Wang, Z.Y.Sun, H.X.Li, M.Wang, Z.Q.Chen, Z.G.Xiao, W.F.Li, J.F.Li, Z.G.Hu, J.Bai, L.X.Chen

Possible exotic structure in light proton-rich nuclei

NUCLEAR REACTIONS C(15N, X), (17N, X), (16O, X), (18O, X), (17F, X), (19F, X), (21F, X), (20Ne, X), (22Ne, X), (21Na, X), (23Na, X), (22Mg, X), (24Mg, X), (23Al, X), (25Al, X), (26Si, X), (27P, X), E ≈ 18-33 MeV; measured reaction σ. 17F, 23Al, 27P deduced radii, halo features. Secondary beams from 36Ar fragmentation. Comparison with model predictions.

doi: 10.1142/S0217732303010156
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2002CH31      Chin.Phys.Lett. 19, 921 (2002)

T.Chen, Y.-L.Ye, Z.-H.Li, D.-X.Jiang, H.Hua, X.-Q.Li, Q.-J.Wang, Y.-C.Ge, D.-Y.Pang, Z.-Y.Di, G.-M.Jin, G.-Q.Xiao, Z.-Y.Guo, Z.-G.Xiao, H.-W.Wang, B.-G.Zhang, H.-Y.Wu, J.-X.Li, Z.-Y.Sun, W.-L.Zhan

Quasi-Elastic Scattering of a Secondary 6He Beam on a 9Be Target at 25MeV/Nucleon

NUCLEAR REACTIONS 9Be(6He, 6He), E=25 MeV/nucleon; measured σ(θ); deduced optical model parameters..

doi: 10.1088/0256-307X/19/7/311
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2002LI40      Chin.Phys.Lett. 10, 917 (2002)

X.-Q.Li, D.-X.Jiang, Y.-L.Ye, H.Hua, T.Chen, Z.-H.Li, Y.-C.Ge, Q.-J.Wang, H.-Y.Wu, G.-M.Jin, L.-M.Duan, Z.-G.Xiao, H.-W.Wang, Z.-Y.Li, S.-F.Wang

Isotopic Distributions of the 18N Fragmentation Products in Coincidence with Neutrons on Targets 197Au and 9Be

NUCLEAR REACTIONS 9Be, 197Au(18N, X), E=33 MeV/nucleon; measured fragments isotopic yields, (fragment)(neutron)-coin. 18N deduced nucleon density distribution. Abrasion-ablation model.


2002WA33      High Energy Phys. and Nucl.Phys. (China) 26, 1117 (2002)

H.-W.Wang, G.-M.Jin, H.-Y.Wu, Z.-G.Xiao, B.-G.Zhang, L.-M.Duan, Z.-Y.Wei, Z.-Y.Li, R.-J.Hu, Y.-Y.Liu, Z.-H.Lu, K.-L.Chen, S.-F.Wang, H.-D.Zhu, X.-Q.Li, T.Chen, H.Hua

Experimental Study on 22Na(p, γ)23Mg Reaction


2002WU04      Phys.Lett. 538B, 39 (2002)

H.-Y.Wu, Z.-G.Xiao, G.-M.Jin, B.-G.Zhang, Z.-Y.Li, L.-M.Duan, H.-W.Wang, Z.-Y.Wei, Y.-Y.Liu, S.-F.Wang, Z.-H.Lu, Y.-T.Zhu, H.-D.Zhu, R.-J.Hu

Evidence of 'Slow ' Relaxation of Isospin Degree of Freedom

NUCLEAR REACTIONS 112,124Sn(36Ar, X), (40Ar, X), E=35 MeV/nucleon; measured fragments isotope yield ratios vs kinetic energy; deduced isospin non-equilibrium in dissipative fragment emission process.

doi: 10.1016/S0370-2693(02)01971-8
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2001WA53      High Energy Phys. and Nucl.Phys. (China) 25, 731 (2001)

H.-W.Wang, H.-Y.Wu, G.-M.Jin, B.-G.Zhang, Z.-G.Xiao, L.-M.Duan, Z.-Y.Wei, Z.-Y.Li, Z.-H.Lu, Y.-Y.Liu, K.-L.Chen, R.-J.Hu, H.-D.Zhu, L.Cen, S.-F.Wang, X.-Q.Li, T.Chen, H.Hua

Measurement of β+ Delayed α Decay of 20Na


2001WA54      High Energy Phys. and Nucl.Phys. (China) 25, 971 (2001)

H.-W.Wang, G.-M.Jin, H.-Y.Wu, B.-G.Zhang, Z.-G.Xiao, L.-M.Duan, Z.-Y.Wei, Z.-Y.Li, Z.-H.Lu, Y.-Y.Liu, K.-L.Chen, R.-J.Hu, H.-D.Zhu, L.Cen, S.-F.Wang, X.-Q.Li, T.Chen, H.Hua

Measurement of β+ Delay Proton Decay of 23Al


2001XI02      Chin.Phys.Lett. 18, 1037 (2001)

Z.-G.Xiao, G.-M.Jin, H.-Y.Wu, Z.-Y.Wei, H.-W.Wang, L.-M.Duan, Y.-Y.Liu, Z.-Y.Li, B.-G.Zhang, Y.-T.Zhu, S.-F.Wang, Z.-H.Lu, H.-D.Zhu, R.-J.Hu

Experimental Probe to the Isospin-Dependent Properties of Hot Nuclei in Reactions 40Ar + 112, 124Sn at 30 MeV/u

NUCLEAR REACTIONS 112,124Sn(40Ar, X), E=30 MeV/nucleon; measured light charged particles emission probability, energy spectra.

doi: 10.1088/0256-307X/18/8/313
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2001ZH45      High Energy Phys. and Nucl.Phys. (China) 25, 636 (2001)

B-G.Zhang, S.-F.Wang, L.-M.Duan, W.-X.Wen, G.-M.Jin, Z.-Y.Li, Z.-Y.He, H.-W.Wang, Z.-G.Xiao, J.-W.Zheng, H.-Y.Wu, Z.-Y.Wei

Investigation of Nuclear Deformation in Excited 213Fr


2000HU08      Chin.Phys.Lett. 17, 188 (2000)

H.Hua, D.-X.Jiang, X.-Q.Li, T.Qian, H.-Y.Wu, G.-M.Jin, W.-L.Zhan, L.-M.Duan, Z.-G.Xiao, Z.-Y.Guo, Z.-Y.Li, H.-W.Wang, S.-F.Wang

Breakup of 33.4 MeV/u 17N on a 9Be Target

NUCLEAR REACTIONS 9Be(17N, nX), E=33.4 MeV/nucleon; measured neutron spectra, σ(θ), (nitrogen)(neutron)-coin; deduced reaction mechanism features. Nuclear diffraction dissociation model, two-cluster wave function.

doi: 10.1088/0256-307X/17/3/012
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1999WU04      Chin.Phys.Lett. 16, 499 (1999)

E.-J.Wu, J.-W.Zheng, Z.-G.Xiao, C.Zhang, J.-L.Tan, S.-Z.Yin, S.-F.Wang, G.-M.Jin, X.Yin, M.-T.Song, W.-Y.Jin, X.-P.Peng, Z.-Y.Li, H.-Y.Wu, Z.-Y.He, D.-X.Jiang, X.Qian

Evidence for Different Fission Behavior of Hot Nuclei Formed in Central and Peripheral Collisions of 40Ar + 209Bi Reaction at 25 MeV/u

NUCLEAR REACTIONS 209Bi(40Ar, X), E=25 MeV/nucleon; measured α spectra, fission fragments mass, energy distributions vs compound nucleus excitation energy; deduced two fission modes.

doi: 10.1088/0256-307X/16/7/011
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