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NSR database version of April 25, 2024.

Search: Author = X.Zhu

Found 85 matches.

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2024ZH12      Eur.Phys.J. A 60, 35 (2024)

X.Zhu, P.-p.Wu, Z.-q.Zhang

Screening length in a soft wall AdS/QCD model

doi: 10.1140/epja/s10050-024-01249-y
Citations: PlumX Metrics


2023BY02      Phys.Rev.Lett. 131, 082502 (2023)

W.Byron, H.Harrington, R.J.Taylor, W.DeGraw, N.Buzinsky, B.Dodson, M.Fertl, A.Garcia, G.Garvey, B.Graner, M.Guigue, L.Hayen, X.Huyan, K.S.Khaw, K.Knutsen, D.McClain, D.Melconian, P.Muller, E.Novitski, N.S.Oblath, R.G.H.Robertson, G.Rybka, G.Savard, E.Smith, D.D.Stancil, M.Sternberg, D.W.Storm, H.E.Swanson, J.R.Tedeschi, B.A.VanDevender, F.E.Wietfeldt, A.R.Young, X.Zhu, for the He6-CRES Collaboration

First Observation of Cyclotron Radiation from MeV-Scale e± following Nuclear β Decay

RADIOACTIVITY 6He(β-), 19Ne(β+) [7Li(d, 3He), E=17.8 MeV; 19F(p, n), E=12 MeV]; measured decay products, Eβ, Iβ; deduced β spectra, first direct observation of cyclotron radiation from individual highly relativistic β in a waveguide. The cyclotron radiation emission spectroscopy (CRES) technique, FN-tandem accelerator at the University of Washington.

doi: 10.1103/PhysRevLett.131.082502
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2023ZH52      Chin.Phys.C 47, 114103 (2023)

X.-Y.Zhu, S.Luo, L.-J.Qi, D.-M.Zhang, X.-H.Li, W.-B.Lin

Simple model for cluster radioactivity half-lives in trans-lead nuclei

RADIOACTIVITY 212,214Po, 238Pu(α), 222,224,226Ra(14C), 228Th(20O), 230U(22Ne), 230Th, 232,234U(24Ne), 234U(26Ne), 234,236U, 236,238Pu(28Mg), 236U, 238Pu(30Mg), 238Pu(32Si), 242Cm(34Si), 213Po, 215At(α), 221Fr, 221,223Ra, 225Ac(14C), 231Pa(23F), 231Pa, 233,235U(24Ne), 233,235U(25Ne), 235U(26Ne); calculated T1/2. Comparison with available data.

doi: 10.1088/1674-1137/acf48a
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2022GU21      Astrophys.J. 941, 31 (2022)

D.L.Guo, R.T.Zhang, X.L.Zhu, Y.Gao, K.Z.Lin, T.Cao, D.M.Zhao, X.B.Zhu, C.J.Zhang, S.F.Zhang, X.Ma

Benchmark n ℓ-resolved Cross Sections of Single and Double Charge Exchange Processes in 1.67-20 KeV u-11 C4+ Collisions with He

NUCLEAR REACTIONS He(C, X), E=1.67-2 keV/nucleon; analyzed available data; deduced σ for charge exchange processes.

doi: 10.3847/1538-4357/ac9d2e
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2022WU13      Phys.Rev. C 106, 025204 (2022)

Y.Wu, X.Jin, H.Huang, J.Ping, X.Zhu

Investigation of the meson-meson interaction

doi: 10.1103/PhysRevC.106.025204
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2022XI01      Phys.Rev. C 105, 025201 (2022)

Z.Xia, S.Fan, X.Zhu, H.Huang, J.Ping

Search for doubly heavy dibaryons in the quark delocalization color screening model

doi: 10.1103/PhysRevC.105.025201
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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
Citations: PlumX Metrics


2021ZH23      Eur.Phys.J. A 57, 96 (2021)

X.Zhu, Z.-q.Zhang

Light quark energy loss in a soft-wall AdS/QCD model

doi: 10.1140/epja/s10050-021-00418-7
Citations: PlumX Metrics


2020CI05      Phys.Rev. C 101, 034907 (2020)

P.Cirkovic, J.Milosevic, L.Nadderd, F.Wang, X.Zhu

Skewness of the elliptic flow distribution in √ sNN = 5.02 PbPb collisions from the HYDJET + + model

doi: 10.1103/PhysRevC.101.034907
Citations: PlumX Metrics


2020DO04      Phys.Rev. C 101, 014908 (2020)

M.Dordevic, J.Milosevic, L.Nadderd, M.Stojanovic, F.Wang, X.Zhu

Correlations between azimuthal anisotropy Fourier harmonics in PbPb collisions at √ sNN = 2.76 TeV in the HYDJET + + model and in the multiphase transport model

doi: 10.1103/PhysRevC.101.014908
Citations: PlumX Metrics


2020HU03      Phys.Rev. C 101, 034004 (2020)

H.Huang, X.Zhu, J.Ping

Reanalysis of the most strange dibaryon within constituent quark models

doi: 10.1103/PhysRevC.101.034004
Citations: PlumX Metrics


2020LI33      Nucl.Instrum.Methods Phys.Res. A980, 164506 (2020)

Q.Li, H.Jing, B.Zhou, C.Ning, J.Tang, J.Ren, H.Yi, X.Zhu, L.Zhang, W.Jiang, R.Fan, J.Bao, C.Feng, X.Ruan, Y.Chen, L.Zhou, Y.Li, Z.Tan, Y.Chen, Q.An, H.Bai, P.Cao, Q.Chen, P.Cheng, Z.Cui, M.Gu, F.Guo, C.Han, Z.Han, G.He, Y.He, Y.He, H.Huang, W.Huang, X.Huang, X.Ji, X.Ji, H.Jiang, L.Kang, M.Kang, B.Li, L.Li, X.Li, Y.Li, R.Liu, S.Liu, X.Liu, G.Luan, Y.Ma, B.Qi, Z.Song, H.Sun, X.Sun, Z.Sun, H.Tang, P.Wang, Q.Wang, T.Wang, Y.Wang, Z.Wang, Z.Wang, J.Wen, Z.Wen, Q.Wu, X.Wu, X.Wu, L.Xie, Y.Yang, L.Yu, T.Yu, Y.Yu, G.Zhang, J.Zhang, L.Zhang, Q.Zhang, Q.Zhang, X.Zhang, Y.Zhang, Z.Zhang, Y.Zhao, L.Zhou, Z.Zhou, D.Zhu, K.Zhu, P.Zhu

Neutron and γ background measurements of the experimental halls at the CSNS back-streaming white neutron source

doi: 10.1016/j.nima.2020.164506
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2019CH04      Phys.Rev. A 99, 012710 (2019)

L.Chen, X.Shan, X.Zhao, X.Zhu, X.Hu, Y.Wu, W.Feng, D.Guo, R.Zhang, Y.Gao, Z.Huang, J.Wang, X.Ma, X.Chen

Two-body fragmentation dynamics of N2Oq+(q=2, 3) induced by electron-capture collisions with 5.7 - keV/u Xe15+

NUCLEAR REACTIONS N, O(Xe, Xe'), E=5.7 keV/nucleon; measured reaction products; deduced kinetic energy release (KER) distributions for the ion-pair products. Comparison with calculations.

doi: 10.1103/PhysRevA.99.012710
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2019ZH11      Eur.Phys.J. A 55, 18 (2019)

Z.-q.Zhang, X.Zhu

The effect of magnetic field on holographic entanglement entropy

doi: 10.1140/epja/i2019-12687-4
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2018HU10      Phys.Rev. C 98, 034001 (2018)

H.Huang, J.Ping, X.Zhu, F.Wang

Possible existence of a dibaryon candidate N Δ(D21)

doi: 10.1103/PhysRevC.98.034001
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2017GU01      Phys.Rev. A 95, 012707 (2017)

D.L.Guo, X.Ma, R.T.Zhang, S.F.Zhang, X.L.Zhu, W.T.Feng, Y.Gao, B.Hai, M.Zhang, H.B.Wang, Z.K.Huang

State-selective electron capture in 30- and 100-keV He+ + He collisions

NUCLEAR REACTIONS He(α, E), E=30, 100 keV; measured reaction products, Eβ, Iβ; deduced σ, σ(θ). Comparison with theoretical calculations.

doi: 10.1103/PhysRevA.95.012707
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2017GU03      Phys.Rev. A 95, 022705 (2017)

D.L.Guo, X.Ma, S.F.Zhang, X.L.Zhu, W.T.Feng, R.T.Zhang, Y.Gao, B.Hai, M.Zhang, D.B.Qian, S.Yan, and P.Zhang

Dynamics of transfer ionization in p-He collisions at intermediate energies

NUCLEAR REACTIONS He(p, X), E=50-100 keV; measured reaction products, Eβ, Iβ; deduced that electron momentum distribution projected onto the scattering plane is consistent with the prediction of an independent two-step mechanism involving a binary encounter. Comparison with theoretical calculations.

doi: 10.1103/PhysRevA.95.022705
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2017ZH20      Phys.Rev. C 95, 044902 (2017)

X.Zhu, Y.Zhou, H.Xu, H.Song

Correlations of flow harmonics in 2.76A TeV Pb-Pb collisions

doi: 10.1103/PhysRevC.95.044902
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2016ZH08      Phys.Rev. A 93, 032709 (2016)

R.T.Zhang, W.T.Feng, X.L.Zhu, S.F.Zhang, D.L.Guo, Y.Gao, D.B.Qian, S.Xu, S.C.Yan, P.Zhang, Z.K.Huang, H.B.Wang, B.Hai, D.M.Zhao, X.Ma

Two-electron transfer and ionization mechanism in 80-keV/u Ne8+ on He collisions

NUCLEAR REACTIONS He(Ne, X), E=80 keV/nucleon; measured reaction products, Eβ, Iβ; deduced autoionization decay from doubly excited states with symmetric and asymmetric configurations.

doi: 10.1103/PhysRevA.93.032709
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2015ZH07      Phys.Rev. C 91, 034904 (2015)

X.Zhu, F.Meng, H.Song, Y.-X.Liu

Hybrid model approach for strange and multistrange hadrons in 2.76A TeV Pb+Pb collisions

doi: 10.1103/PhysRevC.91.034904
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2015ZH15      Phys.Rev. C 91, 064908 (2015)

Y.Zhou, X.Zhu, Pe.Li, H.Song

Investigation of possible hadronic flow in √ sNN = 5.02 p-Pb collisions

doi: 10.1103/PhysRevC.91.064908
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2015ZH35      Phys.Rev. C 92, 035210 (2015)

X.Zhu, H.Huang, J.Ping, F.Wang

Configuration mixing and effective baryon-baryon interactions

doi: 10.1103/PhysRevC.92.035210
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2014HI07      Phys.Rev. A 90, 042713 (2014)

P.-M.Hillenbrand, S.Hagmann, A.B.Voitkiv, B.Najjari, D.Banas, K.-H.Blumenhagen, C.Brandau, W.Chen, E.De Filippo, A.Gumberidze, D.L.Guo, C.Kozhuharov, M.Lestinsky, Yu.A.Litvinov, A.Muller, H.Rothard, S.Schippers, M.S.Schoffler, U.Spillmann, S.Trotsenko, X.L.Zhu, Th.Stohlker

Electron-loss-to-continuum cusp in U88 + N2 collisions

NUCLEAR REACTIONS N(U, N'), E=90 MeV/nucleon; measured reaction products, Eβ, Iβ; deduced σ(E), σ(θ, E). Comparison with fully relativistic Dirac calculations.

doi: 10.1103/PhysRevA.90.042713
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2014KA30      Phys.Rev.Lett. 113, 022502 (2014)

J.Katich, X.Qian, Y.X.Zhao, K.Allada, K.Aniol, J.R.M.Annand, T.Averett, F.Benmokhtar, W.Bertozzi, P.C.Bradshaw, P.Bosted, A.Camsonne, M.Canan, G.D.Cates, C.Chen, J.-P.Chen, W.Chen, K.Chirapatpimol, E.Chudakov, E.Cisbani, J.C.Cornejo, F.Cusanno, M.M.Dalton, W.Deconinck, C.W.de Jager, R.De Leo, X.Deng, A.Deur, H.Ding, P.A.M.Dolph, C.Dutta, D.Dutta, L.El Fassi, S.Frullani, H.Gao, F.Garibaldi, D.Gaskell, S.Gilad, R.Gilman, O.Glamazdin, S.Golge, L.Guo, D.Hamilton, O.Hansen, D.W.Higinbotham, T.Holmstrom, J.Huang, M.Huang, H.F.Ibrahim, M.Iodice, X.Jiang, G.Jin, M.K.Jones, A.Kelleher, W.Kim, A.Kolarkar, W.Korsch, J.J.LeRose, X.Li, Y.Li, R.Lindgren, N.Liyanage, E.Long, H.-J.Lu, D.J.Margaziotis, P.Markowitz, S.Marrone, D.McNulty, Z.-E.Meziani, R.Michaels, B.Moffit, C.Munoz Camacho, S.Nanda, A.Narayan, V.Nelyubin, B.Norum, Y.Oh, M.Osipenko, D.Parno, J.C.Peng, S.K.Phillips, M.Posik, A.J.R.Puckett, Y.Qiang, A.Rakhman, R.D.Ransome, S.Riordan, A.Saha, B.Sawatzky, E.Schulte, A.Shahinyan, M.H.Shabestari, S.Sirca, S.Stepanyan, R.Subedi, V.Sulkosky, L.-G.Tang, A.Tobias, G.M.Urciuoli, I.Vilardi, K.Wang, Y.Wang, B.Wojtsekhowski, X.Yan, H.Yao, Y.Ye, Z.Ye, L.Yuan, X.Zhan, Y.Zhang, Y.-W.Zhang, B.Zhao, X.Zheng, L.Zhu, X.Zhu, X.Zong

Measurement of the Target-Normal Single-Spin Asymmetry in Deep-Inelastic Scattering from the Reaction 3He ↑ (e, e')X

doi: 10.1103/PhysRevLett.113.022502
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2013WI12      Pure Appl.Chem. 85, 1047 (2013)

M.E.Wieser, N.Holden, T.B.Coplen, J.K.Bohlke, M.Berglund, W.A.Brand, P.De Bievre, M.Groning, R.D.Loss, J.Meija, T.Hirata, T.Prohaska, R.Schonberg, G.O'Connor, T.Walczyk, S.Yoneda, X.-K.Zhu

Atomic weights of the elements 2011 (IUPAC Technical Report)

COMPILATION Z=1-118; analyzed available data; compiled atomic weights.

doi: 10.1351/PAC-REP-13-03-02
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2012ZH07      Chin.Phys.C 36, 210 (2012)

X.-P.Zhang, G.-W.Li, Z.-Z.Ren, Q.Zheng, X.-L.Zhu, J.-P.Cheng

Systematical law of (n, γ) reaction cross sections of even-even nuclei

NUCLEAR REACTIONS Ge, Si, S, Sn, Te, Xe, Ba, Hf, W, Os(n, γ), E not given; analyzed experimental data; deduced systematics, σ formula.

doi: 10.1088/1674-1137/36/3/004
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2011ZH30      Phys.Rev. C 84, 031901 (2011)

X.Zhang, J.Chen, Z.Ren, N.Xu, Z.Xu, Q.Zheng, X.Zhu

Effect of final state interactions on particle production in d + Au collisions at energies available at the BNL Relativistic Heavy Ion Collider

doi: 10.1103/PhysRevC.84.031901
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2010WA05      Phys.Rev. C 81, 017301 (2010)

S.Y.Wang, D.P.Sun, B.T.Duan, X.L.Ren, B.Qi, X.X.Zhu, F.Z.Lv, C.Liu, C.J.Xu, J.Meng, H.Hua, F.R.Xu, Z.Y.Li, S.Q.Zhang, Y.Shi, J.M.Yao, L.H.Zhu, X.G.Wu, G.S.Li, Y.Liu, X.Q.Li, Y.Zheng, L.L.Wang, L.Wang

Coexistence of collective and noncollective structures in 118Sn

NUCLEAR REACTIONS 116Cd(7Li, 4np), E=50 MeV; measured Eγ, Iγ, γγ-coin. 118Sn; deduced levels, J, π, bands and configurations. Comparison with Total Routhian surface (TRS) calculations and fixed constrained triaxial relativistic mean-field (RMF) theory.

doi: 10.1103/PhysRevC.81.017301
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2010ZH32      Nucl.Phys. A834, 291c (2010)

D.C.Zhou, Y.X.Mao, R.Z.Wan, Y.Schutz, Z.-B.Yin, Y.P.Wang, K.Ma, G.Conesa, Y.Kharlov, M.L.Wang, X.R.Zhu, X.Yin, X.Cai, and the ALICE Collaboration

Potential physics measurement with ALICE electromagnetic calorimeters

doi: 10.1016/j.nuclphysa.2010.01.001
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2010ZH39      Nucl.Phys. A834, 770c (2010)

X.Zhu, Y.Wang, J.Wang, Y.Li, Ji.Cheng

Beam test results of high counting rate MRPCs at GSI

doi: 10.1016/j.nuclphysa.2010.01.142
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2009WA26      Chin.Phys.C 33, 838 (2009)

S.-Y.Wang, B.-T.Duan, X.-X.Zhu, X.-L.Ren, X.-L.Yang, J.Xi, F.-Z.Lu, D.-P.Sun, Y.-B.Lu, X.-J.Liu, H.Hua, Z.-Y.Li, S.-Q.Zhang, B.Qi, J.-M.Yao, L.-H.Zhu, X.-G.Wu, G.-S.Li, Y.Liu, X.-Q.Li, Y.Zheng, L.-L.Wang, L.Wang

Structural evolution of the intruder band in 118Sn

NUCLEAR REACTIONS 116Cd(7Li, 4np)118Sn, E=48 MeV; measured Eγ, Iγ, γγ-coin.; deduced energy levels, J, π, intruder band.

doi: 10.1088/1674-1137/33/10/004
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2009ZH34      Nucl.Phys. A830, 845c (2009)

X.Zhu, and the STAR collaboration

Strangeness production in d+Au collisions at √ sNN = 200 GeV in STAR

doi: 10.1016/j.nuclphysa.2009.10.009
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2007BL05      Eur.Phys.J. C 49, 303 (2007)

M.Bleicher, X.Zhu

Is constituent quark scaling a unique sign of parton recombination?

NUCLEAR REACTIONS Au(Au, X), E(cm)=200 GeV/nucleon; analyzed particles elliptic flow vs transverse momentum. Two hadron-string transport models compared.

doi: 10.1140/epjc/s10052-006-0125-2
Citations: PlumX Metrics


2007ZH15      Phys.Lett. B 647, 366 (2007)

X.Zhu, M.Bleicher, S.L.Huang, K.Schweda, H.Stocker, N.Xu, P.Zhuang

D(D-pol) correlations as a sensitive probe for thermalization in high energy nuclear collisions

NUCLEAR REACTIONS 1H(p, X), 197Au(197Au, X), Pb(Pb, X), E(cm)=200 GeV/nucleon; analysed data, azimuthal correlations of D, D-bar meson pairs. Non-relativistic Langevin approach.

doi: 10.1016/j.physletb.2007.01.072
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2006HW04      Phys.Rev. C 74, 017303 (2006), Erratum Phys.Rev. C 106, 069901 (2022)

J.K.Hwang, A.V.Ramayya, J.H.Hamilton, J.O.Rasmussen, Y.X.Luo, D.Fong, K.Li, C.Goodin, S.J.Zhu, S.C.Wu, M.A.Stoyer, R.Donangelo, X.-R.Zhu, H.Sagawa

Identification of high spin states in 100Zr

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin. 100Zr deduced high-spin levels, J, π. Gammasphere array.

doi: 10.1103/PhysRevC.74.017303
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2006LU10      J.Phys.(London) G32, 1121 (2006)

Y.Lu, M.Bleicher, F.Liu, Z.Liu, H.Petersen, P.Sorensen, H.Stocker, N.Xu, X.Zhu

Anisotropic flow at RHIC: how unique is the number-of-constituent-quark scaling?

NUCLEAR REACTIONS 197Au(197Au, X), E(cm)=200 GeV/nucleon; calculated anisotropic flow, transverse momentum dependence. Transport models.

doi: 10.1088/0954-3899/32/8/004
Citations: PlumX Metrics


2006MA08      Nucl.Phys. A764, 261 (2006)

G.MacLachlan, A.Aghalaryan, A.Ahmidouch, B.D.Anderson, R.Asaturyan, O.Baker, A.R.Baldwin, D.Barkhuff, H.Breuer, R.Carlini, E.Christy, S.Churchwell, L.Cole, E.Crouse, S.Danagoulian, D.Day, T.Eden, M.Elaasar, R.Ent, M.Farkhondeh, H.Fenker, J.M.Finn, L.Gan, K.Garrow, P.Gueye, C.R.Howell, B.Hu, M.K.Jones, J.J.Kelly, C.Keppel, M.Khandaker, W.-Y.Kim, S.Kowalski, A.Lai, A.Lung, D.Mack, R.Madey, D.M.Manley, P.Markowitz, J.Mitchell, H.Mkrtchyan, A.K.Opper, B.Plaster, C.Perdrisat, V.Punjabi, B.Raue, T.Reichelt, J.Reinhold, J.Roche, Y.Sato, N.Savvinov, A.Yu.Semenov, I.A.Semenova, W.Seo, N.Simicevic, G.Smith, S.Taylor, S.Stepanyan, V.Tadevosyan, S.Tajima, L.Tang, W.Tireman, P.E.Ulmer, W.Vulcan, J.W.Watson, S.P.Wells, F.Wesselmann, S.Wood, C.Yan, C.Yan, S.Yang, L.Yuan, W.-M.Zhang, H.Zhu, X.Zhu

The ratio of proton electromagnetic form factors via recoil polarimetry at Q2=1.13 (GeV/c)2

NUCLEAR REACTIONS 1H(polarized e, e'p), E=2329 MeV; measured recoil proton spectra, polarization. 1H deduced ratio of electromagnetic form factors.

doi: 10.1016/j.nuclphysa.2005.09.012
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2006PE34      Phys.Rev.C 74, 064908 (2006)

H.Petersen, Q.Li, X.Zhu, M.Bleicher

Directed and elliptic flow in heavy-ion collisions from Ebeam = 90 MeV/nucleon to Ec.m. = 200 GeV/nucleon

NUCLEAR REACTIONS Pb(Pb, X), E=20-160 MeV/nucleon; analyzed protons and pions directed and elliptic flow, related features.

doi: 10.1103/PhysRevC.74.064908
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2006ZH30      J.Phys.(London) G32, 2181 (2006)

X.Zhu, M.Bleicher, H.Stocker

Elliptic flow analysis at RHIC with the Lee-Yang zeros method in a relativistic transport approach

NUCLEAR REACTIONS 197Au(197Au, X), E(cm)=200 GeV/nucleon; calculated elliptic flow. Relativistic transport approach, comparison with data.

doi: 10.1088/0954-3899/32/11/011
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2006ZH35      J.Phys.(London) G32, S365 (2006)

X.Zhu, H.Petersen, M.Bleicher

Elliptic flow and constituent quark scaling from hadron-string transport models

NUCLEAR REACTIONS 197Au(197Au, X), Pb(Pb, X), E=high; analyzed charged particle elliptic flow, related features. Ultra-relativistic quantum molecular dynamics model.

doi: 10.1088/0954-3899/32/12/S45
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2005BL14      J.Phys.(London) G31, S709 (2005)

M.Bleicher, E.Bratkovskaya, S.Vogel, X.Zhu

Transverse pressure and strangeness dynamics in relativistic heavy-ion reactions

NUCLEAR REACTIONS 197Au(197Au, X), Pb(Pb, X), E=high; calculated pion and kaon inverse slope parameters, mean transverse momentum, elliptic flow. Transport models, comparison with data.

doi: 10.1088/0954-3899/31/6/011
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2005KR14      Phys.Rev.Lett. 95, 142002 (2005)

K.Kramer, D.S.Armstrong, T.D.Averett, W.Bertozzi, S.Binet, C.Butuceanu, A.Camsonne, G.D.Cates, J.-P.Chen, S.Choi, E.Chudakov, F.Cusanno, A.Deur, P.Djawotho, D.Dutta, J.M.Finn, H.Gao, F.Garibaldi, O.Gayou, R.Gilman, A.Glamazdin, V.Gorbenko, K.A.Griffioen, J.-O.Hansen, D.W.Higinbotham, W.Hinton, T.Horn, C.W.de Jager, X.Jiang, W.Korsch, J.LeRose, D.Lhuillier, N.Liyanage, D.J.Margaziotis, K.McCormick, Z.-E.Meziani, R.Michaels, B.Milbrath, B.Moffit, S.Nanda, C.F.Perdrisat, R.Pomatsalyuk, V.Punjabi, B.Reitz, J.Roche, R.Roche, M.Roedelbronn, N.Savvinov, J.Secrest, J.Singh, S.Sirca, K.Slifer, P.Solvignon, D.J.Steiner, R.Suleiman, V.Sulkosky, A.Tobias, A.Vacheret, Y.Xiao, X.Zheng, J.Zhou, L.Zhu, X.Zhu, P.A.Zolnierczuk

Q2 Dependence of the Neutron Spin Structure Function gn2 at Low Q2

NUCLEAR REACTIONS 3He(polarized e, e'), E=3.465-5.727 GeV; measured parallel and perpendicular cross section differences. 1n, 3He deduced momentum transfer dependence of spin structure function.

doi: 10.1103/PhysRevLett.95.142002
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2005ST20      J.Phys.(London) G31, S929 (2005)

H.Stocker, E.L.Bratkovskaya, M.Bleicher, S.Soff, X.Zhu

Nonequilibrium models of relativistic heavy-ion collisions

NUCLEAR REACTIONS Pb(Pb, X), 197Au(197Au, X), E=high; analyzed collective flow, jet suppression, related data. Hydrodynamical and transport models.

doi: 10.1088/0954-3899/31/6/037
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2005ZH40      Phys.Rev. C 72, 064911 (2005)

X.Zhu, M.Bleicher, H.Stocker

Elliptic flow analysis in Au+Au collisions at √ sNN = 200 GeV: Fluctuations vs non-flow effects

NUCLEAR REACTIONS 197Au(197Au, X), E(cm)=200 GeV/nucleon; analyzed elliptic flow data, fluctuations. Ultrarelativistic quantum molecular dynamics, cumulant method.

doi: 10.1103/PhysRevC.72.064911
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2004BL02      Nucl.Instrum.Methods Phys.Res. A517, 139 (2004)

I.Blevis, J.Boger, E.Bonvin, B.T.Cleveland, X.Dai, F.Dalnoki-Veress, G.Doucas, J.Farine, H.Fergani, D.Grant, R.L.Hahn, A.S.Hamer, C.K.Hargrove, H.Heron, P.Jagam, N.A.Jelley, C.Jillings, A.B.Knox, H.W.Lee, I.Levine, M.Liu, S.Majerus, A.McDonald, K.McFarlane, C.Mifflin, A.J.Noble, S.Noel, V.M.Novikov, J.K.Rowley, M.Shatkay, J.J.Simpson, D.Sinclair, B.Sur, J.-X.Wang, M.Yeh, X.Zhu

Measurement of 222Rn dissolved in water at the Sudbury Neutrino Observatory

RADIOACTIVITY 222Rn(α); measured Eα, Iα, contribution to detector background.

doi: 10.1016/j.nima.2003.10.103
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2004IT02      Nucl.Phys. A731, 41 (2004)

M.Itoh, H.Sakaguchi, M.Uchida, T.Ishikawa, T.Kawabata, T.Murakami, H.Takeda, T.Taki, S.Terashima, N.Tsukahara, Y.Yasuda, M.Yosoi, U.Garg, M.Hedden, B.Kharraja, M.Koss, B.K.Nayak, X.Zhu, H.Fujimura, M.Fujiwara, K.Hara, H.P.Yoshida, H.Akimune, M.N.Harakeh, M.Volkerts

The effect of deformation in the isoscalar giant dipole resonance

NUCLEAR REACTIONS 144,148,150,152,154Sm(α, α'), E=386 MeV; measured Eα, Iα, σ(E, θ). 144,148,150,152,154Sm deduced isoscalar GDR and high-energy octupole resonance parameters.

doi: 10.1016/j.nuclphysa.2003.11.017
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetE1886.


2004SA56      Phys.Rev. C 70, 044613 (2004)

P.K.Saha, H.Noumi, D.Abe, S.Ajimura, K.Aoki, H.C.Bhang, K.Dobashi, T.Endo, Y.Fujii, T.Fukuda, H.C.Guo, O.Hashimoto, H.Hotchi, K.Imai, E.H.Kim, J.H.Kim, T.Kishimoto, A.Krutenkova, K.Maeda, T.Nagae, M.Nakamura, H.Outa, T.Saito, A.Sakaguchi, Y.Sato, R.Sawafta, M.Sekimoto, Y.Shimizu, T.Takahashi, H.Tamura, L.Tang, K.Tanida, T.Watanabe, H.H.Xia, S.H.Zhou, X.F.Zhu, L.H.Zhu

Σ-nucleus potential studied with the (π-, K+) reaction on medium-to-heavy nuclear targets

NUCLEAR REACTIONS H, C, Si, Ni, In, Bi(π-, K+X), E at 630-780 MeV/c; measured particle spectra, angular distributions; deduced Σ hyperon binding energies, Σ-nucleus potential features.

doi: 10.1103/PhysRevC.70.044613
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2003MA36      Eur.Phys.J. A 17, 323 (2003)

R.Madey, A.Yu.Semenov, S.Taylor, A.Aghalaryan, E.Crouse, G.MacLachlan, B.Plaster, S.Tajima, W.Tireman, C.Yan, A.Ahmidouch, B.D.Anderson, H.Arenhovel, R.Asaturyan, O.Baker, A.R.Baldwin, H.Breuer, R.Carlini, E.Christy, S.Churchwell, L.Cole, S.Danagoulian, D.Day, M.Elaasar, R.Ent, M.Farkhondeh, H.Fenker, J.M.Finn, L.Gan, K.Garrow, P.Gueye, C.Howell, B.Hu, M.K.Jones, J.J.Kelly, C.Keppel, M.Khandaker, W.-Y.Kim, S.Kowalski, A.Lung, D.Mack, D.M.Manley, P.Markowitz, J.Mitchell, H.Mkrtchyan, A.Opper, C.Perdrisat, V.Punjabi, B.Raue, T.Reichelt, J.Reinhold, J.Roche, Y.Sato, I.A.Semenova, W.Seo, N.Simicevic, G.Smith, S.Stepanyan, V.Tadevosyan, L.Tang, P.Ulmer, W.Vulcan, J.W.Watson, S.Wells, F.Wesselmann, S.Wood, C.Yan, S.Yang, L.Yuan, W.-M.Zhang, H.Zhu, X.Zhu

Neutron electric form factor up to Q2 = 1.47 (GeV/c)2

NUCLEAR REACTIONS 2H(polarized e, e'n), E=0.844-3.395 GeV; measured neutron spectra, polarization. 1n deduced form factors.

doi: 10.1140/epja/i2002-10169-6
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2003ZH15      Phys.Rev. C 67, 067901 (2003)

P.Zhuang, X.Zhu

Leakage effect on J/ψp, distributions in different centrality bins for Pb-Pb collisions at E/A=160 GeV

NUCLEAR REACTIONS Pb(Pb, X), E=160 GeV/nucleon; calculated J/ψ transverse momentum vs centrality, leakage effect. Transport approach, comparison with data.

doi: 10.1103/PhysRevC.67.067901
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2002AK01      Phys.Rev.Lett. 88, 082501 (2002)

H.Akikawa, S.Ajimura, R.E.Chrien, P.M.Eugenio, G.B.Franklin, J.Franz, L.Gan, K.Imai, P.Khaustov, M.May, P.H.Pile, B.Quinn, A.Rusek, J.Sasao, R.I.Sawafta, H.Schmitt, H.Tamura, L.Tang, K.Tanida, L.Yuan, S.H.Zhu, X.F.Zhu

Hypernuclear Fine Structure in Λ9Be

NUCLEAR REACTIONS 9Be(K-, π-), E at 0.93 GeV/c; measured Eγ, Iγ, πγ-coin. 9Be deduced hypernucleus level energies, B(E2), Λ-spin-dependent spin-orbit force. Hyperball array.

doi: 10.1103/PhysRevLett.88.082501
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2002LI20      Appl.Radiat.Isot. 56, 731 (2002)

G.Li, Z.Pu, X.Kong, F.Zhang, X.Zhu

Cross Section Measurements for (n, 3n) Reactions Induced by 14.8 MeV Neutrons

NUCLEAR REACTIONS 209Bi, 191Ir, 151Eu, 185Re(n, 3n), E=14.8 MeV; measured σ. Activation technique.

doi: 10.1016/S0969-8043(01)00247-0
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset31527.


2002NO09      Phys.Rev.Lett. 89, 072301 (2002); Erratum Phys.Rev.Lett. 90, 049902 (2003)

H.Noumi, P.K.Saha, D.Abe, S.Ajimura, K.Aoki, H.C.Bhang, T.Endo, Y.Fujii, T.Fukuda, H.C.Guo, K.Imai, O.Hashimoto, H.Hotchi, E.H.Kim, J.H.Kim, T.Kishimoto, A.Krutenkova, K.Maeda, T.Nagae, M.Nakamura, H.Outa, M.Sekimoto, T.Saito, A.Sakaguchi, Y.Sato, R.Sawafta, Y.Shimizu, T.Takahashi, L.Tang, H.Tamura, K.Tanida, T.Watanabe, H.H.Xia, S.H.Zhou, L.H.Zhu, X.F.Zhu

Sigma-Nucleus Potential in A = 28

NUCLEAR REACTIONS Si(π-, K+), E at 1.2 GeV/c; measured missing mass, σ(E, θ); deduced Σ-nucleus potential features.

doi: 10.1103/PhysRevLett.89.072301
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2001AK10      Nucl.Phys. A691, 134c (2001)

H.Akikawa, S.Ajimura, R.E.Chrien, P.M.Eugenio, G.Franklin, J.Franz, L.Gan, K.Imai, P.Khaustov, M.May, P.H.Pile, B.Quinn, A.Rusek, J.Sasao, R.I.Sawafta, H.Schmitt, H.Tamura, L.Tang, K.Tanida, L.Yuan, L.H.Zhu, X.F.Zhu

γ-Ray Spectroscopy of Λ9Be

NUCLEAR REACTIONS 9Be(K-, π-), E at 0.9 GeV/c; measured Eγ, Iγ, (particle)γ-coin. 9Be deduced hypernucleus transitions, spin-orbit force features.

doi: 10.1016/S0375-9474(01)01020-X
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2001NO08      Nucl.Phys. A691, 29c (2001)

H.Noumi, D.Abe, S.Ajimura, K.Aoki, H.C.Bhang, K.Dobashi, T.Endo, Y.Fujii, T.Fukuda, H.C.Guo, O.Hashimoto, H.Hotchi, E.H.Kim, J.H.Kim, K.Imai, T.Kishimoto, A.Krutenkova, K.Maeda, T.Nagae, M.Nakamura, H.Outa, P.K.Saha, T.Saito, A.Sakaguchi, Y.Sato, R.Sawafta, M.Sekimoto, Y.Shimizu, T.Takahashi, H.Tamura, L.Tang, K.Tanida, T.Watanabe, H.H.Xia, S.H.Zhou, L.H.Zhu, X.F.Zhu

First Results on Quasi-Free Σ Production in the (π-, K+) Reactions

NUCLEAR REACTIONS H, C, Si, Ni, In, Bi(π-, K+), E at 1.2 GeV/c; measured missing mass spectra; deduced Σ hyperon production features.

doi: 10.1016/S0375-9474(01)00998-8
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2000TA07      Nucl.Phys. A663-664, 481c (2000)

H.Tamura, D.Abe, S.Ajimura, H.Akikawa, K.Araki, H.C.Bhang, R.E.Chrien, T.Endo, P.Eugenio, G.B.Franklin, Y.Fujii, T.Fukuda, L.Gan, O.Hashimoto, H.Hotchi, K.Imai, Y.Kakiguchi, P.Khaustov, J.H.Kim, Y.D.Kim, H.Kohri, M.May, T.Miyoshi, T.Murakami, T.Nagae, J.Nakano, H.Noumi, H.Outa, K.Ozawa, P.H.Pile, B.P.Quinn, A.Rusek, T.Saito, J.Sasao, Y.Sato, S.Satoh, R.I.Sawafta, R.A.Schumacher, M.Sekimoto, T.Takahashi, T.Tamagawa, L.Tang, K.Tanida, H.H.Xia, L.Yuan, S.H.Zhou, L.H.Zhu, X.F.Zhu

High-Resolution Hypernuclear Gamma-Ray Spectroscopy

NUCLEAR REACTIONS 7Li(π+, K+), E at 1.05 GeV/c; measured Eγ, Iγ. 7Li deduced hypernucleus transitions B(E2), B(M1). 9Be(K-, π-), E not given; measured Eγ, Iγ. 9Be deduced hypernucleus transitions.

doi: 10.1016/S0375-9474(99)00636-3
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1999SH04      Phys.Rev. C59, 172 (1999)

Y.-S.Shen, X.F.Zhu, Z.Ren

Deformed-Skyrme-Hartree-Fock Calculation of Hg Isotopes

NUCLEAR STRUCTURE 170,172,174,176,178,180,182,184,186,188,190,192,194,196,198,200,202,204,206,208,210Hg; calculated binding energies, two-neutron separation energies, deformations, quadrupole moments. Deformed Skyrme-Hartree-Fock model, SKI4 force parameters.

doi: 10.1103/PhysRevC.59.172
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1999WA25      Chin.Phys.Lett. 16, 873 (1999)

Y.-B.Wang, W.-P.Liu, X.-X.Bai, Z.-C.Li, A.-L.Li, S.-H.Zhou, X.-F.Zhu, X.-M.Li, G.-K.He, G.Guo, G.Lian, X.-D.Tang

Angular Distribution for 7Be(d, n)8B Reaction at Ec.m. = 8.3 MeV and the Astrophysical S17(0) Factor for 7Be(p, γ)8B Reaction

NUCLEAR REACTIONS 2H(7Be, n), E(cm)=8.3 MeV; measured σ(θ), σ. 7Be(p, γ), E=low; deduced reaction S-factor. Radioactive beam, DWBA calculations. Nuclear astrophysics.

doi: 10.1088/0256-307X/16/12/006
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1998SH16      Chin.Phys.Lett. 15, 404 (1998)

Y.-S.Shen, X.-F.Zhu, Z.-Z.Ren

Deformed-Skyrme-Hartree-Fock Calculation on C Isotope

NUCLEAR STRUCTURE 9,10,11,12,13,14,15,16,17,18,19,20,21,22C; calculated binding energies, radii, quadrupole moments. Skyrme-Hartree-Fock theory.

doi: 10.1088/0256-307X/15/6/006
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1995AL20      Phys.Rev.Lett. 75, 3814 (1995)

T.Alber, H.Appelshauser, J.Bachler, J.Bartke, H.Bialkowska, F.Bieser, M.A.Bloomer, C.O.Blyth, R.Bock, C.Bormann, F.P.Brady, R.Brockmann, P.Buncic, H.L.Caines, D.Cebra, P.Chan, G.E.Cooper, J.G.Cramer, P.B.Cramer, P.Csato, I.Derado, J.Dunn, V.Eckardt, F.Eckhardt, S.Euler, M.I.Ferguson, H.G.Fischer, Z.Fodor, P.Foka, P.Freund, M.Fuchs, J.Gal, M.Gazdzicki, E.Gladysz, J.Grebieszkow, J.Gunther, J.W.Harris, W.Heck, S.Hegyi, L.A.Hill, I.Huang, M.A.Howe, G.Igo, D.Irmscher, J.Jacobs, P.G.Jones, K.Kadija, J.Kecskemeti, M.Kowalski, A.Kuhmichel, B.Lasiuk, S.Margetis, J.W.Mitchell, A.Mock, J.M.Nelson, G.Odyniec, J.Palinkas, G.Palla, A.D.Panagiotou, A.Petridis, A.Piper, A.M.Poskanzer, D.J.Prindle, F.Puhlhofer, W.Rauch, R.Renfordt, W.Retyk, H.G.Ritter, D.Rohrich, H.Rudolph, K.Runge, A.Sandoval, H.Sann, E.Schafer, N.Schmitz, S.Schonfelder, P.Seyboth, J.Seyerlein, F.Sikler, E.Skrzypczak, R.Stock, H.Strobele, I.Szentpetery, J.Sziklai, M.Toy, T.A.Trainor, S.Trentalange, M.Vassiliou, G.Vesztergombi, D.Vranic, S.Wenig, C.Whitten, T.Wienold, L.Wood, J.Zimanyi, X.-Z.Zhu, R.Zybert

Transverse Energy Production in 208Pb + Pb Collisions at 158 GeV per Nucleon

NUCLEAR REACTIONS Pb(208Pb, X), E=158 GeV/nucleon; measured forward, transverse energy related features.

doi: 10.1103/PhysRevLett.75.3814
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1993BO25      Phys.Rev. C48, 1116 (1993)

J.D.Bowman, P.P.J.Delheij, C.M.Frankle, C.R.Gould, D.G.Haase, J.N.Knudson, G.E.Mitchell, S.Penttila, H.Postma, N.R.Roberson, S.J.Seestrom, J.J.Szymanski, J.J.Yeh, S.H.Yoo, V.W.Yuan, X.Zhu, and the TRIPLE Collaboration

Experimental Limit on Parity Violation in Nonresonant Neutron-Nucleus Scattering

NUCLEAR REACTIONS 232Th(polarized n, X), E=6-86 eV; measured transmission spectra, parity nonconserving longitudinal asymmetry; deduced nonresonant scattering parity violation limit.

doi: 10.1103/PhysRevC.48.1116
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1993CE10      Int.J.Mod.Phys. E2, 603 (1993)

L.S.Celenza, C.M.Shakin, W.-D.Sun, J.Szweda, X.Zhu

Scalar-Isoscalar Correlator in a Phenomenological Coupled-Channel Quark Model

doi: 10.1142/S0218301393000261
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1993FR13      Phys.Rev. C48, 1601 (1993)

C.M.Frankle, J.D.Bowman, B.E.Crawford, P.P.J.Delheij, C.R.Gould, D.G.Haase, J.N.Knudson, G.E.Mitchell, S.S.Patterson, S.I.Penttila, Yu.P.Popov, N.R.Roberson, S.J.Seestrom, E.I.Sharapov, Y.-F.Yen, S.H.Yoo, V.W.Yuan, X.Zhu, and the TRIPLE Collaboration

Neutron Resonance Spectroscopy of 113In and 115In

NUCLEAR REACTIONS In(n, X), E=25-500 eV; measured transmission; deduced σ(E). 115In(n, γ), E=25-500 eV; measured capture Eγ, Iγ. 114,116In deduced resonances, parameters.

doi: 10.1103/PhysRevC.48.1601
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset13591.


1993RO25      Nucl.Instrum.Methods Phys.Res. A326, 549 (1993)

N.R.Roberson, C.D.Bowman, J.D.Bowman, P.P.J.Delheij, C.M.Frankle, C.R.Gould, D.G.Haase, J.N.Knudson, G.E.Mitchell, R.N.Mortensen, S.I.Penttila, H.Postma, S.J.Seestrom, J.J.Szymanski, S.A.Wender, S.H.Yoo, V.W.Yuan, X.Zhu

An Apparatus and Techniques of Tests for Fundamental Symmetries in Compound-Nucleus Scattering with Epithermal Polarized Neutron Beams

NUCLEAR REACTIONS 238U(polarized n, X), E=5-300 eV; measured neutron transmission. 239U resonance deduced average parity violating asymmetry.

doi: 10.1016/0168-9002(93)90858-F
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1992FR14      Phys.Rev. C46, 778 (1992)

C.M.Frankle, J.D.Bowman, J.E.Bush, P.P.J.Delheij, C.R.Gould, D.G.Haase, J.N.Knudson, G.E.Mitchell, S.Penttila, H.Postma, N.R.Roberson, S.J.Seestrom, J.J.Szymanski, S.H.Yoo, V.W.Yuan, X.Zhu, and the TRIPLE Collaboration

Parity Nonconservation for Neutron Resonances in 232Th

NUCLEAR REACTIONS 232Th(polarized n, X), E=6-400 eV; measured total σ, parity violating asymmetries. 233Th deduced resonances, p-wave parity nonconserving matrix element rms values, spreading width.

doi: 10.1103/PhysRevC.46.778
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1992FR15      Phys.Rev. C46, 1542 (1992)

C.M.Frankle, J.D.Bowman, J.E.Bush, P.P.J.Delheij, C.R.Gould, D.G.Haase, J.N.Knudson, G.E.Mitchell, S.Penttila, H.Postma, N.R.Roberson, S.J.Seestrom, J.J.Szymanski, V.W.Yuan, X.Zhu, and the TRIPLE Collaboration

Parity Nonconservation for the 0.88-eV Neutron Resonance in 81Br

NUCLEAR REACTIONS 81Br(polarized n, n), E=0.88 eV; measured parity nonconserving longitudinal analyzing power, σ for p-wave resonances.

doi: 10.1103/PhysRevC.46.1542
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1992PO13      Hyperfine Interactions 75, 153 (1992)

H.Postma, J.D.Bowman, C.D.Bowman, J.E.Bush, P.P.J.Delheij, C.M.Frankle, C.R.Gould, D.G.Haase, J.Knudson, G.E.Mitchell, S.Penttila, N.R.Roberson, S.J.Seestrom, J.J.Szymanski, S.H.Yoo, V.W.Yuan, X.Zhu, and the TRIPLE Collaboration

Parity Violation at Neutron p-Wave Resonances of 238U and 232Th and Related Questions

NUCLEAR REACTIONS 238U, 232Th(n, X), E ≈ epithermal; measured transmission. 239U, 233Th deduced p-wave resonances, parity violation matrix element rms value.

doi: 10.1007/BF02398972
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1992ZH12      Phys.Rev. C46, 768 (1992)

X.Zhu, J.D.Bowman, C.D.Bowman, J.E.Bush, P.P.J.Delheij, C.M.Frankle, C.R.Gould, D.G.Haase, J.N.Knudson, G.E.Mitchell, S.Penttila, H.Postma, N.R.Roberson, S.J.Seestrom, J.J.Szymanski, V.W.Yuan, and the TRIPLE Collaboration

Parity Nonconservation for Neutron Resonances in 238U

NUCLEAR REACTIONS 238U(polarized n, X), E=6-300 eV; measured total σ; deduced P-odd, P-even effective nucleon-nucleon interaction. 239U deduced resonances, l, gΓn, p-wave parity nonconserving matrix element rms value, spreading width.

doi: 10.1103/PhysRevC.46.768
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1991FR08      Phys.Rev.Lett. 67, 564 (1991)

C.M.Frankle, J.D.Bowman, J.E.Bush, P.P.J.Delheij, C.R.Gould, D.G.Haase, J.N.Knudson, G.E.Mitchell, S.Penttila, H.Postma, N.R.Roberson, S.J.Seestrom, J.J.Szymanski, S.H.Yoo, V.W.Yuan, X.Zhu, and the TRIPLE Collaboration

Sign Correlations and Parity Nonconservation for Neutron Resonances in 232Th

NUCLEAR REACTIONS 232Th(polarized n, n), E ≈ 8.3-392 eV; measured longitudinal analyzing power vs E, transmission yield. 232Th resonances deduced parity violation evidence statistical significance. High confidence limit measurement.

doi: 10.1103/PhysRevLett.67.564
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset14143.


1991KI08      Phys.Rev. C44, 1077 (1991)

J.D.King, D.Frekers, R.Abegg, R.E.Azuma, L.Buchmann, C.Chan, T.E.Drake, R.Helmer, K.P.Jackson, L.Lee, C.A.Miller, E.Rost, R.Sawafta, R.Schubank, S.S.M.Wong, S.Yen, X.Q.Zhu

Excitation of the 10.957 MeV 0-; T = 0 State in 16O by 400 MeV Protons

NUCLEAR REACTIONS 16O(polarized p, p'), E=400 MeV; measured σ(θ), analyzing power vs θ; deduced reaction mechanism.

doi: 10.1103/PhysRevC.44.1077
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1991KO28      Phys.Lett. 267B, 23 (1991)

J.E.Koster, E.D.Davis, C.R.Gould, D.G.Haase, N.R.Roberson, L.W.Seagondollar, S.Wilburn, X.Zhu

Direct Reaction Test of T Violation in 2 MeV Neutron Scattering from Aligned 165Ho

NUCLEAR REACTIONS 165Ho(polarized n, X), E=2 MeV; measured deformation effect, T-violating spin-flip asymmetries vs θ; deduced analyzing power, time reversal invariance validity, nucleon-nucleon interaction couplings T(odd)/T(even) ratio. Rotating, cryogenically-aligned target.

doi: 10.1016/0370-2693(91)90517-T
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1991SZ05      Nucl.Phys. A527, 701c (1991)

J.J.Szymanski, C.D.Bowman, J.D.Bowman, J.Knudson, S.Penttila, S.J.Seestrom, V.W.Yuan, J.E.Bush, C.M.Frankle, C.R.Gould, D.G.Haase, G.E.Mitchell, P.P.J.Delheij, H.Postma, N.R.Roberson, X.Zhu

Parity and Time Reversal Symmetry Nonconservation in Neutron-Nucleus Interactions

NUCLEAR REACTIONS 238U(polarized n, X), E=60-72 eV; measured transmission, resonance σ helicity dependence. 239U deduced p-, s-wave states mixing parity-violating rms matrix element, parity violating spreading width.

doi: 10.1016/0375-9474(91)90217-T
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1991YU02      Phys.Rev. C44, 2187 (1991)

V.W.Yuan, C.D.Bowman, J.D.Bowman, J.E.Bush, P.P.J.Delheij, C.M.Frankle, C.R.Gould, D.G.Haase, J.N.Knudson, G.E.Mitchell, S.Penttila, H.Postma, N.R.Roberson, S.J.Seestrom, J.J.Szymanski, X.Zhu

Parity Nonconservation in Polarized-Neutron Transmission Through 139La

NUCLEAR REACTIONS 139La(polarized n, X), E=0.5-1 eV; measured transmission. 140La resonance deduced asymmetry. Parity nonconservation, longitudinal beam polarization.

doi: 10.1103/PhysRevC.44.2187
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1990BO26      Phys.Rev.Lett. 65, 1192 (1990)

J.D.Bowman, C.D.Bowman, J.E.Bush, P.P.Delheij, C.M.Frankle, C.R.Gould, D.G.Haase, J.Knudson, G.E.Mitchell, S.Penttila, H.Postma, N.R.Roberson, S.J.Seestrom, J.J.Szymanski, V.W.Yuan, X.Zhu

Parity Nonconservation for Neutron Resonances in 238U

NUCLEAR REACTIONS 238U(n, X), E=epithermal; measured transmission, σ(E) vs helicity. 239U levels deduced parity nonconservation.

doi: 10.1103/PhysRevLett.65.1192
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1990BO46      Nucl.Instrum.Methods Phys.Res. A297, 183 (1990)

J.D.Bowman, J.J.Szymanski, V.W.Yuan, C.D.Bowman, A.Silverman, X.Zhu

Current-Mode Detector for Neutron Time-of-Flight Studies

NUCLEAR REACTIONS 238U(n, X), E not given; measured neutron transmission spectra. Tof, current mode detector.

doi: 10.1016/0168-9002(90)91365-I
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1990PE19      J.Phys.(Paris), Colloq.C-6, 523 (1990)

S.Penttila, C.D.Bowman, J.D.Bowman, J.E.Bush, P.P.J.Delheij, C.M.Frankle, C.R.Gould, D.G.Haase, J.N.Knudson, G.E.Mitchell, H.Postma, N.R.Roberson, S.J.Seestrom, J.J.Szymanski, V.M.Yuan, X.Zhu

Parity Violation in 239U Neutron Resonances

NUCLEAR REACTIONS 238U(polarized n, X), E ≤ 250 eV; measured asymmetry in transmission; deduced parity violating matrix element rms value, effective NN-interaction parameter. 239U resonances deduced parity-violating spreading width.


1988HA40      Hyperfine Interactions 43, 133 (1988)

D.G.Haase, C.R.Gould, J.E.Koster, N.R.Roberson, L.W.Seagondollar, J.P.Soderstrum, M.B.Schneider, X.Zhu

Studies of Parity and Time Reversal Symmetries in Neutron Scattering from 165Ho

NUCLEAR REACTIONS 165Ho(polarized n, X), E=7.1, 11 MeV; measured transmission differences; deduced parity, time violating analyzing powers.

doi: 10.1007/BF02398293
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset13156.


1988ZH01      Nucl.Phys. A476, 701 (1988)

X.Q.Zhu, S.S.M.Wong

Static Properties of Chiral Soliton in a Nonlinear σ-Field with ρ-Meson Coupling

NUCLEAR STRUCTURE 1n, 1H; calculated μ. Soliton model.

doi: 10.1016/0375-9474(88)90331-4
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1988ZH12      Nucl.Phys. A488, 409c (1988)

Y.-T.Zhu, W.-Q.Shen, X.-Q.Hu, Y.-X.Xie, W.-L.Zhan, X.Zhu, S.-L.Li, P.C.N.Crouzen, E.E.Koldenhof, B.Kotlinski, R.H.Siemssen, H.W.Wilschut

Search for Incomplete Deep Inelastic Collision

NUCLEAR REACTIONS 27Al(20Ne, αX), E=10.8 MeV/nucleon; measured invariant σ(Eα, θα); deduced reaction mechanism.

doi: 10.1016/0375-9474(88)90278-3
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1987SH21      Z.Phys. A328, 219 (1987)

W.Q.Shen, W.M.Qiao, W.L.Zhan, L.X.Ge, X.T.Zhu, S.Wenqing, G.Linxiao, G.Zhongyan, Q.Weinmin, Z.Wenlong, Z.Yongtai, Y.Shuzhi, Z.Y.Guo, S.Z.Yin

Analysis of Deep Inelastic Collisions between 16O and 27Al

NUCLEAR REACTIONS 27Al(16O, X), E=80.6 MeV; calculated σ(θ), total kinetic energy loss spectra, interaction time, energy dissipation, fragment deformation, element distribution. Deep inelastic collisions.


1987ZH08      Nucl.Phys. A466, 623 (1987)

X.Q.Zhu, N.Mobed, S.S.M.Wong

Impulse Approximation and Spin Observables in Inelastic Nucleon-Nucleus Scattering

NUCLEAR REACTIONS 12C, 28Si(p, p'), (polarized p, p'), E=150, 200 MeV; calculated polarization, analyzing power, spin transfer parameters. Impulse approximation.

doi: 10.1016/0375-9474(87)90460-X
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1986MO12      Nucl.Phys. A456, 644 (1986)

N.Mobed, S.S.M.Wong, X.Zhu

Gamma-Ray Angular Correlation in Intermediate Energy Proton-Nucleus Scattering

NUCLEAR REACTIONS 12C(polarized p, p'γ), E=200 MeV; calculated γp(θ), γ-, proton polarization; deduced scattering amplitude independent parameters.

doi: 10.1016/0375-9474(86)90080-1
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1986ZH04      Phys.Lett. 174B, 142 (1986)

X.Zhu, S.S.M.Wong, N.Mobed

Difference between P and A(y) in forward Angle Inelastic Proton-Nucleus Scattering at Intermediate Energies

NUCLEAR REACTIONS 12C(polarized p, p'), E=150 MeV; 24Mg, 28Si(polarized p, p'), E=200 MeV; calculated polarization, analyzing power difference vs θ; deduced kinematic effect role.

doi: 10.1016/0370-2693(86)90729-X
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1985ZH01      Phys.Lett. 150B, 256 (1985)

X.Zhu, S.S.M.Wong

Scaling Law in the Electrodisintegration of Deuterons around 1(GeV/c)2

NUCLEAR REACTIONS 2H(e, e'), E not given; calculated photodisintegration σ(θ(e'), E(e')).

doi: 10.1016/0370-2693(85)91006-8
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1985ZH07      Nucl.Phys. A439, 619 (1985)

X.Zhu, R.E.Azuma, T.E.Drake, J.D.King, S.S.M.Wong

Wolfenstein Parameters in the Helicity Representation for Intermediate-Energy Proton-Nucleus Scattering

NUCLEAR REACTIONS 12C(polarized p, p), E=200 MeV; measured polarization, analyzing power, Wolfenstein parameters vs θ. Distorted wave approximation, momentum helicity representation.

doi: 10.1016/0375-9474(85)90330-6
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1984WO12      Phys.Lett. 149B, 299 (1984)

S.S.M.Wong, R.E.Azuma, T.E.Drake, J.D.King, X.Zhu

Wolfenstein Parameters for 0+ → 0- Transitions Excited by Proton Scattering at Intermediate Energies

NUCLEAR REACTIONS 16O(polarized p, p'), E=135 MeV; calculated σ(θ), analyzing power vs θ. 16O(polarized p, p'), E=200 MeV; calculated Wolfenstein parameters; deduced exchange term role. DWIA analysis.

doi: 10.1016/0370-2693(84)90410-6
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Note: The following list of authors and aliases matches the search parameter X.Zhu: , X.B.ZHU, X.F.ZHU, X.K.ZHU, X.L.ZHU, X.Q.ZHU, X.R.ZHU, X.T.ZHU, X.X.ZHU, X.Y.ZHU, X.Z.ZHU