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郑华(Hua Zheng)
职称/职务: 研究员
电话:
传真:
电子信箱: zhengh@snnu.edu.cn
出生年月:
办公地点: 致知楼3544

教育及科研工作经历:

2018.06-现在 伟德,伟德BV1946官方网站,研究员

2017.08-2018.04  意大利南方国家实验室(INFN, Laboratori Nazionali del Sud),博士后

2017.07-2017.07  意大利南方国家实验室(INFN, Laboratori Nazionali del Sud),访问学者

2017.04-2017.06  意大利卡塔尼亚大学(Universita degli Studi di Catania),物理与天文公司,科研学者

2017.02-2017.03  意大利南方国家实验室(INFN, Laboratori Nazionali del Sud),访问学者

2015.02-2017.02  意大利南方国家实验室(INFN, Laboratori Nazionali del Sud),博士后


2009.09-2014.12  美国德州农工大学(Texas A&M University),博士(导师:Aldo Bonasera教授)

2008.09-2009.08  华中师范大学,粒子物理研究所,博士研究生(导师:杨纯斌教授)

2006.09-2008.06  华中师范大学,粒子物理研究所,硕士(导师:杨纯斌教授)

2002.09-2006.06  华中师范大学,物理科学与技术公司,学士


教授课程:

《高等量子力学》, (18-25秋):18-26研

《高等量子力学》, (19 春):16物

《分析力学》, (19-24秋):18-23物创

《量子力学》, (20春&22-26春):17物&19-22物&23卓

《Calculus I》,(25-26秋):25-26电信(中外)

《Calculus II》,(26春):25电信(中外)

指导员工情况:

毕业研究生:王蒙,陶俊琦,吴伟豪,周敏,孙淑婷,达珂,何红斌,秦之迎(与张文超共同指导),谢浈,曹健(与张文超共同指导),刘玥

在读研究生:郭曦瑶,李伟震,张韵涵


教学论文:

[1] 电子自旋是角动量的讨论,程剑剑,郑华*,《大学物理》,38(10)28, 2019.

[2] 基于变分法求解氢原子的径向波函数和能级,卢欣,郑华*,《大学物理》,38(11)62, 2019.

[3] 一种新的Glauber公式的证明方法,陶俊琦,王蒙,程剑剑,郑华*,《物理与工程》,31(1)25,2021.

[4] 物理学中常用的高斯与类高斯型积分, 王蒙,陶俊琦,程剑剑,郑华*,《大学物理》,40(5)13, 2021.

[5] 关于一道狄利克雷边界条件下电势计算题的思考,胡梦蓉,勾翰,邓永菊*,郑华,《物理通报》41(3)28, 2022.

[6] 分析力学中有心力场天体运动, 何红斌,郑华*,张文超,朱励霖, 《广西物理》 43(2) 158, 2022.

[7] 探究耦合双摆系统测度同步的影响因素,裴文杰,王新刚,郑华*,《大学物理》,42(4)51,2023.

[8] 物理学中的“降维打击”,郑华*,王新刚,朱励霖,《物理与工程》,33(3)46,2023.

[9] 计算机模拟辅助教学在分析力学中的应用,何红斌,郑华*,张文超,王新刚,朱励霖,《大学物理》,43(5)33,2024.

[10] 傅科摆的教学实践,杨晓彤,郑华*,《广西物理》45(1)18,2024.

[11] “三生万物”规律生--趣谈“三”妙之处,郑华*,王新刚,朱励霖,《大学物理》43(8)28,2024.

[12] 分析力学助力逆向思维培养,郑华*,张文超,王新刚,朱励霖,包小军,《广西物理》45(4)48,2024.

[13] 分析力学中守恒量与运动方程运用辨析,郭曦瑶,郑华*,张文超,王新刚,朱励霖,江泽方,《广西物理》46 (1)54,2025.

[14] 一维谐振子坐标表象与动量表象的等价性,纪怀昱,张子骏,郑华*,孙辉,《物理与工程》35(3)14,2025.

[15] 一道天体运动物理竞赛题的启示,郭曦瑶,郑华*,张文超,朱励霖,江泽方,《物理通报》44(12)69,2025.

[16] 转动惯量张量教学内容创新实践,郑华*,张文超,王新刚,朱励霖,刘星泉,《物理与工程》35(6)52,2025.

[17] 诺贝尔物理学奖的调查研究,白惠婧,郑华*,王新刚,朱励霖,刘星泉,郭云,《大学物理》45(3)73,2026.

[18] 无限深方势阱中不确定性关系的讨论,祁保山,程剑剑*,车俊岭,张云光,郑华,《大学物理》45(6)54,2026.

[19] 最速降问题与悬链问题的分析力学教学案例设计--从无约束到有约束的梯度化对比,郑华*,张文超,王新刚,朱励霖,刘星泉,郭云,《广西物理》47(2)99,2026.

[20] 薛定谔方程的矩阵有限差分数值解法 (英文),冯逸轩,隆笑,郑华*,张文超,孙辉,王新刚,《物理与工程》接收,2026.

[21] 天体运动轨道封闭性的教学探析,宁波,朱励霖*,郑华,《大学物理》接收,2026.

[22] 从几何转动到赝自旋:二维谐振子的SU(2)对称性,赵李元,程剑剑*,毕梦侠,张金牛,车俊岭,郑华,《大学物理》接收,2026.

[23] 基于问题驱动式教学模式探究有心力场中粒子花瓣形运动轨迹,曹植,石佳豪,郑华,张文超*,《大学物理》接收,2026.


English CV (Last updated Jul 30th, 2026)

Education

2002.09-2006.06, B.S. in Physics Education, Huazhong Normal University, China

2006.09-2008.06, M.S. in Theoretical Physics, Institute of Particle Physics, Huazhong Normal University, China

2008.09-2009.08, Ph.D in Theoretical Physics, Institute of Particle Physics, Huazhong Normal University, China

2009.09-2014.12, Ph.D in Nuclear Physics, Cyclotron Institute, Texas A&M University, USA

Master thesis

Title: The particle distribution and production mechanism in high energy collisions

Supervisor: Prof. C. B. Yang, Email: cbyang@mail.ccnu.edu.cn

Ph.D thesis

Title: Density and temperature in quantum nuclear systems

Supervisor: Prof. A. Bonasera, Email: abonasera@comp.tamu.edu

Employment

2015.02-2017.02, Postdoc at Laboratori Nazionale del Sud, Istituto Nazionale di Fisica Nucleare (INFN), Catania, Italy

Research supervisor: Prof. M. Colonna, Email: colonna@lns.infn.it

2017.04-2017.06, Research Scholar at Dipartmento di Fisica e Astronomia, Universita degli Studi di Catania, Catania, Italy

Research supervisor: Prof. V. Greco, Email: greco@lns.infn.it

2017.08-2018.04, Postdoc at Laboratori Nazionale del Sud, Istituto Nazionale di Fisica Nucleare (INFN), Catania, Italy

Research supervisor: Prof. M. Colonna, Email: colonna@lns.infn.it

2018.06-present, Senior Scientist at School of Physics and Information Technology, Shaanxi Normal University, Xi’an, China

Teaching

l Quantum mechanics for undergraduate

l Analytical mechanics for undergraduate

l Calculus for undergraduate

l Advanced quantum mechanics for graduate

List of Publications: (* Corresponding author, since 2019)

[87] X.Y. Gao, Z. Xie, J.Q. Tao, H. Zheng*, W.C. Zhang, L.L. Zhu, X.Q. Liu, Z.G. Tan, X.Z. Bai and D.M. Zhou, Rapidity density distributions of identified particles and light nuclei in Au+Au collisions at \sqrt{s_{NN}}=3 GeV using Boltzmann-Gibbs thermodynamics and its implication, accepted by NST (2026).

[86] X.Y. Guo, H. Zheng*, W.C. Zhang, L.L. Zhu, X.Q. Liu, Z.G. Tan, D.M. Zhou, B.H. Sa, Deciphering the universal scaling of particle transverse momentum spectra in heavy-ion collisions, Phys. Rev. C 114, 024902 (2026).

[85] X. Duan, X. Liu*, H. Zheng, A. Bonasera, Z. Chen, J. Han, M. Huang, W. Lin, C.W. Ma, P. Ren, G. Tian, J. Wang, R. Wada, J.B. Natowitz, Investigation of differences between triton and 3He in emission dynamics and chronology via correlation functions in 40Ca+40Ca collisions at 35 MeV/u: Insights toward resolving the 3He puzzle, Phys. Rev. C 114, 014635 (2026).

[84] Z.Y. Qin, B. Feng, Y.H. Hou, H.Y. Song, W.C. Zhang*, H. Zheng, S.J. Mao, QCD matter at a finite magnetic field and nonzero chemical potential, Phys. Rev. D 114, 016028 (2026).

[83] J.Z. Zhang, H. Zheng*, L.L. Zhu*, Hadronization of Lambda_c^+ baryons from a recombination model in Pb+Pb collisions at energies available at the CERN Large Hadron Collider, Phys. Rev. C 114, 014907 (2026).

[82] J.Q. Tao, X. Fan, Y. Liu, Y. Sha, K. Zhou, H. Zheng, B.W. Zhang, Deep learning approach for predicting multipole observables in Au+Au collisions at energies available at the BNL Relativisitc Heavy Ion Collider, Phys. Rev. C 113, 064911 (2026).

[81] J.P. Zhang, G.Y. Wang, W.C. Zhang*, B. Feng, A.K. Lei, Z.L. She, H. Zheng, D.M. Zhou*, Y.L. Yan, B.H. Sa*, Inclusive J/Psi productions in pp collisions at 5.02, 7, and 13 TeV with the parton and hadron cascade model PACIAE, Phys. Rev. C 113, 045210 (2026).

[80] A.A. Uleiev, A.G. Magner, S.P. Maydanyuk, A. Bonasera, H. Zheng*, S.N. Fedotkin, A.I. Levon, U.V. Grygoriev, T. Depastas, Macroscopic approaches to rotating neutron stars, Nuclear Physics and Atomic Energy 27, 5 (2026).

[79] Z. Xie, A.K. Lei, H. Zheng*, W.C. Zhang, D.M. Zhou*, Z.L. She, Y.L. Yan, B.H. Sa*, Pseudorapidity dependence of charged-particle production in nonsingle diffractive pp collisions in the PACIAE 4.0 model, Phys. Rev. C 113, 034907 (2026).

[78] J. Cao, W.C. Zhang*, J.P. Zhang, B. Feng, A.K. Lei, Z.L. She, H. Zheng, D.M. Zhou*, Y.L. Yan, B.H. Sa*, Deciphering the nature of X(2300) with the PACIAE model, Phys. Rev. D 113,L031501 (2026).

[77] J. Tan, G. Tian, W. Lin*, R. Wada*, X. Liu, H. Zheng, Y. Chen, A. Chbihi (INDRA Collaboration), Caloric curve and mechanism for emission of light charged particles in Xe+Sn collisions at 50 MeV/u, Phys. Rev. C 113, 024606 (2026).

[76] W. Lei, Q. Wang, A.K. Lei*, Z.L. She, J.X. Gao, D.M. Zhou*, Y.L. Yan*, H. Zheng, W.C. Zhang, B.H. Sa*, Strangeness production in pPb collisions at 5.02 TeV in the PACIAE 4.0 model, Phys. Rev. C 113, 024902 (2026).

[75] Z.G. Tan*, Y.N. Guo*, S.J. Wang, H. Zheng*, Classical interpretation of nonrelativistic quark potential model: Color charge definition and meson mass-radius relationship, Chin. Phys. C 50, 033106 (2026).

[74] X. Duan, J. Liu*, W. Liu*, W. Lin, H. Zheng, A. Bonasera, Z. Chen, J. Han, M. Huang, K. Hagel, C.W. Ma, G. Qu, P. Ren, G. Tian, J. Wang, R. Wada and J.B. Natowitz, Emission time chronology of 3He relative to hydrogen isotopes in 64Zn+197Au collisions at 35 MeV/u, Phys. Rev. C 113, 014603 (2026).

[73] Q. Wang, Z.L. She*, A.K. Lei, D.M. Zhou*, W.C. Zhang, H. Zheng, Y.L. Yan*, B.H. Sa*, Investigation of Tcs0* (2870)0 in pp collisions at sqrt{s}=7 TeV with the PACIAE model, Phys. Lett. B 872, 140068 (2026).

[72] X. Liu, W. Chen, H. He, H. Zheng*, X. Xu*, W. Lin*, J. Han, G. Qu, P. Ren, X. Zhang, Probing symmetry energy slope with mirror nuclei: unmeasured charge radii of proton-rich nuclei from binding energies, Phys. Lett. B 872, 140046 (2026).

[71] Z.Y. Qin, J.H. Shi, J.P. Zhang, J. Cao, B. Feng, W.C. Zhang*, H. Zheng, S.J. Mao, QCD phase transition at finite temperature and chemical potential with nonextensive statistics, Phys. Rev. D 112,096022 (2025).

[70] R. Wada*, Q. Hu*, G.Y. Tian, X.Q. Liu, W.P. Lin, J.H. Han and H. Zheng, High-energy neutron emission and short range nucleon-nucleon correlations, Phys. Rev. C 112, 034614 (2025), Phys. Rev. C 113, 069903(E) (2026).

[69] A.G. Magner, S.P. Maydanyuk*, A. Bonasera, H. Zheng, T. Depastas, A.I. Levon, U.V. Grygoriev, Leptodermic corrections to the TOV equations and nuclear astrophysics within the effective surface approximation, Nucl. Phys. A 1064, 123239 (2025).

[68] Y. Gao*, L. Zhang, M.L. Yu, H. Zheng, G.C. Yong, Xi- collective flow and equation of state of dense nuclear matter in heavy-ion collisions, Phys. Rev. C 112, 024909 (2025).

[67] M. Zhou, H.M. Liu*, H. Zheng*, X. Liu, W. Lin, Z.H. Li*, A. Bonasera, Correlations between maximum mass of neutron stars with the nuclear matter properties and the constraints from PSR J0740+6620 and GW190814, Eur. Phys. J. C 85, 825 (2025).

[66] J.Z. Zhang, H.J. Gong, H. Zheng*, W. Dai, L.L. Zhu*, Spectra and azimuthal harmonic of charmed mesons in Pb+Pb collisions at energies available at the CERN Large Hadron Collider, Phys. Rev. C 112, 024906 (2025).

[65] W.J. Chen, X. Liu*, H. Zheng, X. Zhang, H.B. He, W.P. Lin, J.F. Han, C.W. Ma, C.Y. Qiao, R. Wada, Ratio of volume and surface symmetry energy coefficients: A novel constraint with difference in mirror pair charge radii predicted by Bayesian neural networks, Phys. Rev. C 112, 024301 (2025).

[64] J. Cao, W.C. Zhang*, Z.L. She, A.K. Lei, J.P. Zhang, H. Zheng, D.M. Zhou*, Y.L. Yan, Z.Q. Wang, B.H. Sa*, Charmonium-like exotic hadron productions in e+e- collisions at the BESIII energy with the PACIAE model, Phys. Rev. D 112, 014033 (2025).

[63] Z. Xie, A.K. Lei, H. Zheng*, W.C. Zhang, D.M. Zhou*, Z.L. She, Y.L. Yan, B.H. Sa*, Pseudorapidity density distributions of charged particles and transverse momentum spectra of identified particles in pp collisions in the PACIAE 4.0 model, Phys. Rev. C 112, 014908 (2025).

[62] Z. Xie, J. Zhou, H. Zheng*, W.C. Zhang, L.L. Zhu, X.Q. Liu, Z.G. Tan, D.M. Zhou, X.Z. Bai, A. Bonasera, Average transverse momentum of identified particles in pp collisions, JUSTC, accepted (2025).

[61] Z. Xie, H. Zheng*, W.C. Zhang, L.L. Zhu, X.Q. Liu, Z.G. Tan, D.M. Zhou, A. Bonasera, Average transverse momenta of identified particles in relativistic nucleus-nucleus collisions, Nuclear Techniques 48, 120501 (2025). (In Chinese, Cover story)

[60] H.B. He, H. Zheng*, X.Q. Liu, Y. Gao, and S. Burrello, Ground-state properties of nuclei from carbon to curium in the framework of the Sky3D model, Phys. Rev. C 111,054311  (2025).

[59] X. Zhang, X. Liu*, H. Zheng, W. Lin, R. Wada, J. Han, C.W. Ma, C.Y. Qiao, D. Peng, Y. Huang, Q.Leng, G. Qu, P. Ren and Z. Yang, A novel Bayesian neural network approach for nuclear root-mean-square charge radii, IEEE Transactions on Nuclear Science 72, 795 (2025).

[58] A.K. Lei, Z.L. She, Y.L. Yan, D.M. Zhou*, L. Zheng, W.C. Zhang, H. Zheng, L.V. Bravina, E.E. Zabrodin, B.H. Sa, A brief introduction to PACIAE 4.0, Computer Physics Communications 310, 109520 (2025).

[57] J.H. Shi, Z.Y. Qin, J.P. Zhang, J. Cao, Z.F. Jiang, W.C. Zhang*, H. Zheng, Nonextensive (3+1)-dimensional hydrodynamics for relativistic heavy-ion collisions, Phys. Rev. D 111,036010  (2025).

[56] L. Shvedov, S. Burrello, M. Colonna, H. Zheng, Probing nuclear structure and the equation of state through pre-equilibrium dipole emission in charge-asymmetric reactions, Phys. Rev. C 111,014609  (2025).

[55] S.T. Sun, T. Depastas, H.B. He, H. Zheng*, A. Bonasera, Role of excited states in the sub-barrier fusion of light nuclei, Phys. Rev. C 111,014602  (2025).

[54] T. Depastas*, S.T. Sun, H.B. He, H. Zheng*, A. Bonasera, Revisitng the 3alpha reaction rates in helium burning stars, Phys. Lett. B 860, 139180 (2025).

[53] J. Cao, Z.L. She*, J.P. Zhang, J.H. Shi, Z.Y. Qin, W.C. Zhang*, H. Zheng, A.K. Lei, D.M. Zhou*, Y.L. Yan, B.H. Sa* , X(2370) glueball-like particle productions in e+e- collisions at the BESIII energy and in pp collisions at the LHC energy with PACIAE model, Phys. Rev. D 110,054046 (2024).

[52] A.G. Magner*, S.P. Maydanyuk, A. Bonasera, H. Zheng, A.I. Levon, T. Depastas, U.V. Grygoriev, Neutron stars as dense liquid drop at equilibrium within the effective surface approximation, Int. J. Mod. Phys. E 33, 2450043 (2024).

[51] Z. Xie, J.X. Li, H. Zheng*, W.C. Zhang, L.L. Zhu, X.Q. Liu, Z.G. Tan, D.M. Zhou, A. Bonasera, Midrapidity average transverse momentum of identified charged particles in high-energy heavy-ion collisions, Acta Phys. Sin. 73(18), 181201 (2024). (in Chinese)

[50] Z.G. Tan*, S.J. Wang, Y.N. Guo, H. Zheng*, A. Bonasera, A novel encoding mechanism for particle physics, Nucl. Sci. Tech. 35, 144 (2024). (Cover story)

[49] Zhi-Lei She*, An-Ke Lei, Yu-Liang Yan, Dai-Mei Zhou*, Wen-Chao Zhang, Hua Zheng, Liang Zheng, Yi-Long Xie, Gang Chen, and Ben-Hao Sa*, Identifying an X(3872) tetraquark state versus a molecular state by formation time, velocity, and temperature in relativistic nuclear collisions, Phys. Rev. C 110,014910 (2024).

[48] X. Zhang, H.B. He, G. Qu, X.Q. Liu*, H. Zheng*, W. Lin, J. Han, P. Ren, R. Wada, Investigation of the difference in charge radii of mirror pairs with deep Bayesian neural networks, Phys. Rev. C 110,014316 (2024).

[47]Jun Xu*, Hermann Wolter, Maria Colonna, Mircea Dan Cozma, Pawel Danielewicz, Che Ming Ko, Akira Ono, ManYee Betty Tsang, Ying-Xun Zhang, Hui-Gan Cheng, Natsumi Ikeno, Rohit Kumar, Jun Su, Hua Zheng, Zhen Zhang, Lie-Wen Chen, Zhao-Qing Feng, Christoph Hartnack, Arnaud Le Fèvre, Bao-An Li, Yasushi Nara, Akira Ohnishi, and Feng-Shou Zhang, Comparing pion production in transport simulations of heavy-ion collisions at 270A MeV under controlled conditions, Phys. Rev. C 109,044609 (2024).

[46] J.Q. Tao, H.B. He, H. Zheng*, W.C. Zhang, X.Q. Liu, L.L. Zhu, A. Bonasera, Pseudorapidity distributions of charged particles in asymmetric collisions using Tsallis thermodynamics, Nucl. Sci. Tech. 34, 172 (2023).

[45] W.H. Wu, J.Q. Tao, H. Zheng*, W.C. Zhang, X.Q. Liu, L.L. Zhu, A. Bonasera, Thermodynamic properties at kinetic freeze-out in Au+Au and Cu+Cu collisions at RHIC using the Tsallis distribution, Nucl. Sci. Tech. 34, 151 (2023).

[44] Q. Hu*, G.Y. Tian, R. Wada*, X.Q. Liu, W.P. Lin, H. Zheng, Y.P. Zhang, Z.Q. Chen, R. Han, M.R. Huang, Semirelativistic antisymmetrized molecular dynamics for the production of energetic neutrons in intermediate-energy heavy-ion reactions, Phys. Rev. C 108, 054907 (2023).

[43] T. Depastas*, S.T. Sun, H. Zheng, A. Bonasera, α-cluster microscopic study of 12C + 12C fusion toward the zero energy limit, Phys. Rev. C 108, 035806 (2023).

[42] L.L. Zhu, H. Zheng*, K. Da, H.J. Gong, Z.Z. Ye, G.Q. Liu, R. Hwa, Universal energy dependence of measured temperatures for baryons produced in heavy-ion collisions, Phys. Rev. C 107,064907 (2023).

[41] G. Tian, Z. Chen*, R. Wada*, X. Liu, W. Lin, M. Huang, H. Zheng, Q. Hu, R. Han, F. Shi, X. Zhang, B. Liu and H. Sun, Reaction dynamics and in-medium nucleon-nucleon cross section with 12C+1H at 95 MeV/nucleon, Phys. Rev. C 107,044602 (2023).

[40] T. Settlemyre*, H. Zheng, A. Bonasera, Pair production as a probe for the dynamics of nuclear fission and alpha decay, Phys. Rev. C 107,L031301 (2023).

[39] Q.Z. Leng, Y. Huang, X. Zhang, X.Q. Liu*, R. Wada, W.P. Lin, H. Zheng, J.S. Wang, Z.Q. Chen, M.R. Huang, P.P. Ren, G.F. Qu, J.F. Han, Z.L. Yang, G.Y. Tian, R. Han, Q. Hu, Study of transverse flow dependence on incident energy in heavy-ion collisions near the Fermi energy based on two-particle azimuthal correlation approach, Nucl. Phys. Rev. 40, 10-16 (2023) . (in chinese)

[38] G. Qu, Y. Huang, H. Zheng, X. Liu*, R. Wada, W. Lin, M. Huang, J. Han, P. Ren, Z. Yang, X. Zhang, Q. Leng, Determining nuclear temperature dependence on source neutron-proton asymmetry in heavy-ion reactions at intermediate energy,  Chin. Phys. C 47, 054002 (2023).

[37] T. Settlemyre, H. Zheng*, A. Bonasera, Collective Dynamical pair production at sub-barrier energies for light nuclei, Particles 5, 580 (2022).

[36] J.B. Gu, C.Y. Li, Q. Wang, W.C. Zhang*, H. Zheng, Collective expansion in pp collisions using the Tsallis statistics, J. Phys. G: Nucl. Part. Phys. 49, 115101 (2022).

[35] J.Q. Tao, W.H. Wu, M. Wang, H. Zheng*, W.C. Zhang, L.L. Zhu, A. Bonasera, The novel scaling of Tsallis parameters from the transverse momentum spectra of charged particles in heavy-ion collisions, Particles 5,146 (2022).

[34] X. Zhang, Y. Huang, W. Lin, X. Liu*, H. Zheng et al., Determing impact parameters of heavy-ion collisions at low-intermediate incident energies using deep learning with convolutional neural network, Phys. Rev. C 105,034611 (2022).

[33] L.L. Zhu, B. Wang, M. Wang, H. Zheng*, Energy and centrality dependenc of light nuclei production in relativistic heavy-ion collisions, Nucl. Sci. Tech. 33,45 (2022).

[32] M. Wang, J.Q. Tao, H. Zheng*, W.C. Zhang, L.L. Zhu, A. Bonasera, Number-of-constituent-quark scaling of elliptic flow--a quantitative study, Nucl. Sci. Tech. 33,37 (2022).

[31] H. Zheng*, A. Bonasera, Controlling the wordwide chaotic spreading of COVID-19 through vaccinations, Journal of Modern Physics 13, 1 (2022).

[30] G. Luo, X. Zhang, H. Zheng, D. He*, Infection fatality ratio and case fatality ratio of COVID-19, International Journal of Infectious Diseases 113, 43 (2021).

[29] Y. Huang, W. Lin, H. Zheng, R. Wada, A. Bonasera, Z. Chen, J. Han, R. Han, M. Huang, K. Hagel, T. Keutgen, X. Liu*, Y. G. Ma, C. W. Ma, Z. Majka, G. Qu, L. Qin, P. Ren, G. Tian, J. Wang, Z. Yang, and J. B. Natowitz, Experimental investigation of abnormal transverse flow enhancement of alpha particles in heavy-ion collisions, Phys. Rev. C 104, 044611 (2021).

[28] H. Zheng*, A. Bonasera, Spin Quantization in Heavy Ion Collision, Symmetry 13, 1777 (2021).

[27] C.W. Ma*, H.L. Wei, X. Liu, J. Su, H. Zheng, W.P. Lin, Y.X. Zhang, Nuclear Fragments in Projectile Fragmentation Reactions, Progress in Particle and Nuclear Physics 121, 103911 (2021). (Review)

[26] T. Settlemyre*, H. Zheng, A. Bonasera, Coulomb field correction due to virtual e+e- production in heavy ion collisions, Nucl. Phys. A 1015, 122282 (2021).

[25] J.Q. Tao, M. Wang, H. Zheng*, W.C. Zhang, L.L. Zhu and A. Bonasera, Pseudorapidity distributions of charged particles in pp(pbar), p(d)A and AA collisions using Tsallis thermodynamics, J. Phys. G: Nucl. Part. Phys. 48, 105102 (2021).

[24] G.R. Che, J.B. Gu, W.C. Zhang*, H. Zheng, Identified particle spectra in Pb-Pb, Xe-Xe and p-Pb collisions with Tsallis blast wave model, J. Phys. G: Nucl. Part. Phys. 48, 095103 (2021).

[23] L.L. Zhu, H. Zheng*, R. Hwa, Centrality and transverse-momentum dependence of hadrons in Pb+Pb collisions at energies available at the CERN Large Hadron Collider, Phys. Rev. C 104, 014902 (2021).

[22] W. Lin, P. Ren, X. Liu*, H. Zheng, M. Huang, G. Qu, R. Wada, Investigation of the nuclear liquid-gas phase transition in the static AMD, J. Phys. G: Nucl. Part. Phys. 48, 085103 (2021).

[21] G. Qu, Y. Huang, D. Peng, Z. Xu, W. Lin, H. Zheng, G. Tian, R. Han, C. Ma, M. Huang, P. Ren, J. Han, Z. Yang, X. Liu*, R. Wada, Abnormal flow of alpha particles in heavy-ion collisions at intermediate energies, Phys. Rev. C 103, 044607 (2021).

[20] Y. Huang, H. Zheng, R. Wada, X. Liu, W. Lin, G. Qu, M. Huang, P. Ren, J. Han, A. Bonasera, K. Hagel, M. R. D. Rodrigues, S. Kowalski, T. Keutgen, M. Barbui, and J. B. Natowitz, Nuclear temperature and its dependence on the source neutron-proton asymmetry deduced using the Albergo thermometer, Phys. Rev. C 103, 014601 (2021).

[19] M. Huang, A. Bonasera, S. Zhang*, H. Zheng, D.X. Wang, J.C. Wang, N. Song, X. Tang, L. Lu, G. Zhang, Z. Kohley, M.R.D. Rodrigues, Y.G. Ma and S.J. Yennello, Four alpha correlations in nuclear fragmentation: a game of resonances, Chin. Phys. C 45, 024003 (2021).

[18] H. Zheng*, A. Bonasera, Chaos, percolation and the coronavirus spread: a two-step model, Eur. Phys. J. Plus 135, 799 (2020).

[17] J.C. Wang, S. Zhang, M. Huang, R. Wada, H. Zheng, D.X. Wang, N. Song, X. Tang , L. Li, The Influence of Gogny Nucleon-Nucleon Interaction Potentials of AMD on Ground State Properties of Nuclei, Nucl. Phys. Rev. 37, 580 (2020). (in Chinese)

[16] H. Zheng*, A. Bonasera, The Thomas theorem and the Efimov States within a generalized Bohr model, J. Phys. Commun. 4, 085011 (2020).

[15] Y. Huang, W. Lin, H. Zheng, R. Wada, X. Liu*, G. Qu, M. Huang, P. Ren, J. Han, M.R.D. Rodrigues, S. Kowalski, T. Keutgen, K. Hagel, M. Barbui, A. Bonasera and J.B. Natowitz, Probing the neutron-proton asymmetry dependence of the nuclear source temperature with light charged particles, Phys. Rev. C 101, 064603 (2020).

[14] H. Zheng*, X.R. Zhu, L.L. Zhu and A. Bonasera, Systematic investigation of the particle spectra in Heavy-ion collisions at the Large Hadron Collider, Mod. Phys. Lett. A 35, 2050177 (2020).

[13] L.Y. Qiao, G.R. Che, J.B. Gu, H. Zheng and W.C. Zhang*, Nuclear modification factor in Pb-Pb and p-Pb collisions using Boltzmann transport equation, J. Phys. G: Nucl. Part. Phys. 47, 075101 (2020) .

[12] X. Liu, H. Zheng, R. Wada, W. Lin*, M. Huang, P. Ren, G. Qu, J. Han, M.R.D. Rodrigues, S. Kowalski, T. Keutgen, K. Hagel, M. Barbui, A. Bonasera and J.B. Natowitz, Neutron-proton asymmetry dependence of nuclear temperature with Intermediate mass fragments, Phys. Rev. C 100, 064601 (2019).

[11] L.L. Zhu, H. Zheng* and R.M. Kong, Centrality and Transverse momentum dependencies of Hadrons in Pb+Pb collisions at \sqrt{s_{NN}}=5.02 TeV and Xe+Xe collisions at \sqrt{s_{NN}}=5.44 TeV from a multi-phase transport model, Eur. Phys. J. A 55, 205 (2019).

[10] K. Wang*, A. Bonasera, H. Zheng, G.Q. Zhang, Y.G. Ma and W.Q. Shen, The role of the Heisenberg principle in constrained molecular dynamics model, Int. J. Mod. Phys. E 28, 1950039 (2019).

[9] G. Zhang, M. Huang, A. Bonasera, Y.G. Ma, B.F. Shen, H.W. Wang, W.P. Wang, J.C. Xu, G.T. Fan, H.J. Fu, H. Xue, H. Zheng, L.X. Liu, S. Zhang, W.J. Li, X.G. Cao, X.G. Deng, X.Y. Li, Y.C. Liu, Y. Yu, Y. Zhang, C.B. Fu, X.P. Zhang, Nuclear probes of an out-of-equilibrium plasma at the highest compression, Phys. Lett. A 383, 2285 (2019).

[8] S. Zhang*, J.C. Wang, A. Bonasera, M. Huang, H. Zheng, G. Zhang, Z. Kohley, Y.G. Ma, S.J. Yennello, Triple $\alpha$-particle Resonances in the Decay of Hot Nuclear Systems, Chin. Phys. C 43, 064102 (2019).

[7] W. Lin, P. Ren, H. Zheng*, X. Liu*, M. Huang, K. Yang, G. Qu and R. Wada, Solidarity of signal of measures for the liquid-gas phase transition in the statistical multifragmentation model, Phys. Rev. C 99, 054616 (2019).

[6] S. Burrello*, M. Colonna, G. Col\`{o}, D. Lacroix, X. Roca-Maza, G. Scamps and H. Zheng, Interplay between low-lying isoscalar and isovector dipole modes: a comparative analysis between semi-classical and quantum approaches, Phys. Rev. C 99, 054314 (2019).

[5] K. Zelga*, Z. Majka, R. P{\l}aneta, Z. Sosin*, A. Wieloch, M. Adamczyk, K. {\L}ojek, M. Barbui, S. Wuenschel, K. Hagel, X. Cao, J. Natowitz, R. Wada, G. Giuliani, E.-J. Kim, H. Zheng and S. Kowalski, Dedicated $\Delta$E-E detector system for searching long-lived heaviest nuclei deposited in scintillators, Acta Physica Polonica B 50, 579 (2019).

[4] S. Zhang*, A. Bonasera, M. Huang*, H. Zheng, D.X. Wang, J.C. Wang, L. Lu, G. Zhang, Z. Kohley, Y.G. Ma, S.J. Yennello, Strongly Resonating Bosons in Hot Nuclei, Phys. Rev. C 99, 044605 (2019).

[3] S. Burrello, M. Colonna*,  H. Zheng, The symmetry energy of the nuclear EoS: a study of collective motion and low-energy reaction dynamics in semiclassical approaches , Frontiers in Physics 7, 53 (2019). (Invited review)

[2] R. Wada*, W. Lin, P. Ren, H. Zheng, X. Liu, M. Huang, K. Yang and K. Hagel, Experimental liquid-gas phase transition signals and reaction dynamics, Phys. Rev. C 99, 024616 (2019).

[1] X. G. Cao, E. J. Kim, K. Schmidt, K. Hagel*, M. Barbui, J. Gauthier, S. Wuenschel, G. Giuliani, M. R. D. Rodriguez, S. Kowalski, H. Zheng, M. Huang, A. Bonasera, R. Wada, N.Blando, G. Q. Zhang, C. Y. Wong, A. Staszczak, Z. X. Ren, Y. K. Wang, S. Q. Zhang, J. Meng and J. B. Natowitz, Examination of evidence for resonances at high excitation energy in the 7 alpha disassembly of 28Si, Phys. Rev. C 99, 014606 (2019).


Selected Publications: (before 2019)

[26] W.B. Zhao, L.L. Zhu, H. Zheng, C.M. Ko, H.C. Song*, Spectra and flow of light nuclei in relativistic heavy ion collisions at energies available at the BNL Relativistic Heavy Ion Collider and at the CERN Large Hadron Collider, Phys. Rev. C 98, 054905 (2018).

[25] L.L. Zhu, H. Zheng, C.M. Ko, Y.F. Sun, Light nuclei production in Pb+Pb collisions at sqrt(sNN)=2.76 TeV, Eur. Phys. J. A 54, 175 (2018).

[24] H. Zheng*, S. Burrello, M. Colonna*, D. Lacroix and G. Scamps, Connecting the nuclear equation of state to the interplay between fusion and quasifission processes in low-energy nuclear reactions, Phys. Rev. C 98, 024622 (2018).

[23] W. Lin, P. Ren, H. Zheng*, X. Liu*, M. Huang, R. Wada, and G. Qu, Sensitivity study of experimental measures for nuclear liquid-gas phase transition in the statistical multifragmentation model, Phys. Rev. C 97, 054615 (2018).

[22] W. Lin, H. Zheng, P. Ren, X. Liu*, M. Huang, R. Wada*, Z. Chen, J. Wang, G.Q. Xiao and G. Qu, Statistical analysis of experimental multifragmentation events in 64Zn+112Sn at 40 MeV/nucleon, Phys. Rev. C 97, 044603 (2018).

[21] H. Zheng*, A. Bonasera, M. Huang, S. Zhang, Decay modes of the Hoyle state in 12C, Phys. Lett. B 779, 460-463 (2018).

[20] X. Liu, H. Zheng, W. Lin, M. Huang, Y. Y. Yang*, J. S. Wang, R. Wada*, A. Bonasera, and J. B. Natowitz, Reexamination of a novel determination of density, temperature, and symmetry energy based on a modified Fisher model, Phys. Rev. C 97, 014613 (2018).

[19] Y. Gao, H. Zheng*, L.L. Zhu and A. Bonasera, Description of charged particle pseudorapidity distributions in Pb+Pb collisions with Tsallis thermodynamics, Eur. Phys. J. A 53, 197 (2017).

[18] H. Zheng*, S. Burrello, M. Colonna and V. Baran, Pre-equilibrium effects in charge-asymmetric low-energy reactions, Phys. Lett. B 769, 424-429 (2017).

[17] X. Liu, W. Lin*, M. Huang, R. Wada*, J. Wang, A. Bonasera, H. Zheng, Z. Chen, S. Kowalski, T. Keutgen, K. Hagel, L. Qin,  J.B. Natowitz, T. Materna, P.K. Sahu, M. Barbui, C. Bottosso and  M. R. D. Rodrigues, Chemical potential and symmetry energy for intermediate-mass fragment production in heavy ion reactions near the Fermi energy, Phys. Rev. C 95, 044601 (2017).

[16] J. Mabiala*, H. Zheng,  A. Bonasera, Z. Kohley, and S. J. Yennello, Competition between fermions and bosons in nuclear matter at low densities and finite temperatures, Phys. Rev. C 94, 064617 (2016).

[15] H. Zheng*, S. Burrello, M. Colonna and V. Baran, Dipole response in neutron-rich nuclei with new Skyrme interactions, Phys. Rev. C 94, 014313 (2016).

[14] P. Marini*, H. Zheng, M. Boisjoli, G. Verde, A. Chbihi, P. Napolitani, G. Ademard, L. Augey, C. Bhattacharya, B. Borderie, R. Bougault, J. D. Frankland, Q. Fable, E. Galichet, D. Gruyer, S. Kundu, M. La Commara, I. Lombardo, O. Lopez, G. Mukherjee, M. Parlog, M. F. Rivet, E. Rosato, R. Roy, G. Spadaccini, M. Vigilante, P. C. Wigg, A. Bonasera (INDRA Collaboration), Signals of Bose Einstein condensation and Fermi quenching in the decay of hot nuclear systems, Phys. Lett. B 756, 194-199 (2016).

[13] H. Zheng, Lilin Zhu*, Comparing the Tsallis Distribution with and without Thermodynamical Description in p+p Collisions, Advances in High Energy Physics, Vol. 2016, Article ID 9632126 (2016).

[12] H. Zheng, Lilin Zhu* and A. Bonasera, Systematic analysis of hadron spectra in p+p collisions using Tsallis distributions, Phys. Rev. D 92, 074009 (2015).

[11] J. Mabiala*, H. Zheng, A. Bonasera, P. Cammarata, K. Hagel, L. Heilborn, Z. Kohley, L. W. May, A. B. McIntosh, M. D. Youngs, A. Zarrella and S. J. Yennello, Novel technique to extract experimental symmetry free energy information for nuclear matter, Phys. Rev. C 92, 024605 (2015).

[10] G. Giuliani, H. Zheng* and A. Bonasera, The Many Facets of the (Non-relativistic) Nuclear Equation of State, Progress in Particle and Nuclear Physics 76, 116-164 (2014). (Invited review)

[9] H. Zheng*, G. Giuliani and A. Bonasera, Coulomb Corrections to the Extraction of the Density and Temperature in Non-Relativistic Heavy Ion Collisions, J. Phys. G: Nucl. Part. Phys. 41, 055109 (2014).

[8] H. Zheng*, G. Giuliani and A. Bonasera, Coulomb Corrections to Density and Temperature of Bosons in Heavy Ion Collisions, Phys. Rev. C 88, 024607 (2013).

[7] M. Barbui*, W. Bang, A. Bonasera, K. Hagel, K. Schmidt, J.B. Natowitz, R. Burch, G. Giuliani, M. Barbarino, H. Zheng, G. Dyer, H.J. Quevedo, E. Gaul, A.C. Bernstein, M. Donovan, S. Kimura, M. Mazzocco, F. Consoli, R. De Angelis, P. Andreoli and T. Ditmire, Measurement of the Plasma Astrophysical S Factor for the ^3He(d, p)4He Reaction in Exploding Molecular Clusters, Phys. Rev. Lett. 111, 082502 (2013).

[6] H. Zheng*, G. Giuliani and A. Bonasera, Density and Temperature of Bosons from Quantum Fluctuations, Nucl. Phys. A 892, 43-57 (2012).

[5] L. Qin, K. Hagel, R. Wada, J.B. Natowitz, S. Shlomo, A. Bonasera, G. R\"opke, S. Typel, Z. Chen, M. Huang, J. Wang, H. Zheng, S. Kowalski, M. Barbui, M.R.D. Rodrigues, K. Schmidt, D. Fabris, M. Lunardon, S. Moretto, G. Nebbia, S. Pesente, V. Rizzi, G. Viesti, M. Cinausero, G. Prete, T. Keutgen, Y. EI Masri, Z. Majka and Y.G. Ma, Laboratory Tests of Low Density Astrophysical Nuclear Equations of State, Phys. Rev. Lett. 108, 172701 (2012).

[4] K. Hagel, R. Wada, L. Qin, J.B. Natowitz, S. Shlomo, A. Bonasera, G. R\"opke, S. Typel, Z. Chen, M. Huang, J. Wang, H. Zheng, S. Kowalski, C. Bottosso, M. Barbui, M.R.D. Rodrigues, K. Schmidt, D. Fabris, M. Lunardon, S. Moretto, G. Nebbia, S. Pesente, V. Rizzi, G. Viesti, M. Cinausero, G. Prete, T. Keutgen, Y. EI Masri and Z. Majka, Experimental Determination of In-Medium Cluster Binding Energies and Mott Points in Nuclear Matter, Phys. Rev. Lett. 108, 062702 (2012).

[3] H. Zheng* and A. Bonasera, Higher Order Corrections to Density and Temperature of Fermions from Quantum Fluctuations, Phys. Rev. C 86, 027602 (2012).

[2] H. Zheng and A. Bonasera*, Density and Temperature of Fermions from Quantum Fluctuations, Phys. Lett. B 696, 178-181 (2011).

[1] H. Zheng and C.B. Yang* , Uncertainties of Parton Distributions in a Shower from the Recombination Model, J. Phys. G: Nucl. Part. Phys. 35, 055003 (2008).



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