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郑波 教授

办公地点:

联系邮箱:zhengbo@zju.edu.cn

个人简介(CV)
科研项目(Research grants)
研究论文(Publications)

个人简介(CV)

郑波,男,1961年6月出生,教授、博士生导师,教育部长江学者特聘教授(2001),国家杰出青年科学基金获得者(2003),享受国务院政府特殊津贴(2004)。

受教育经历:

1978.3–1982. 2  中山大学物理系,本科生,获理学学士

1982.3–1985. 2  中山大学物理系,硕士生,获理学硕士

1985.3–1988. 2  中山大学物理系,博士生,获理学博士

工作经历:

1988–1996    中山大学物理系,讲师

1990–1997    德国Siegen University,研究助理

1997–2002    德国马丁路德-Halle University,研究助理

2001–2020    浙江大学物理系,教育部长江学者、特聘教授

2010–2017    浙江大学物理系,系主任(院长)

2020–2023    wedvictor伟德,特聘教授、院长

学术兼职

Specialist Editor of Computer Physics Communications,2006 -2021;

Editorial Board of Chinese Physics B,2009 – 2021;

《物理学报》编委,2009 - 2021;

中国物理学会秋季学术年会统计物理和复杂系统分会召集人/组织者,2011年至今;

中国统计物理和复杂系统年会副主席,2015年至今;

International Advisory Committee, Dynamic Days Asia Pacific 7 & 10, 2012 & 2018, 2022;

Academic Committee, International Conference on Econophysics, 2011, 2014, 2017, 2021, 2023

Editorial Board of Entropy,2025 -

科研项目(Research grants)

研究领域

统计物理,计算物理与机器学习,理论凝聚态物理,金融物理、生物物理与复杂系统

主持研究项目

国家杰出青年科学基金,2004-2007

国家自然科学基金理科基地项目,400万元,2013-2016

国家基金面上项目8项,2003,2004,2009,2011,2014,2018,2022,2026

浙江省自然科学基金重点项目,2010-2013

教育部博士点基金,2003-2005

2011协同创新计划成员(南京大学、中国科技大学、上海复旦大学、上海交通大学、浙江大学,2015 - )

教学课程

本科生:《热力学与统计物理》,《热学与电磁学》,《金融物理导论》、《现代数值模拟方法及其应用》;

研究生:《高等统计物理》

研究论文(Publications)

2021年以来研究论文

1. C. Yang, L. Xiong, C. H. Zeng, and B. Zheng, Heterogenous dynamic behaviors of skyrmions on a periodic substrate under dc and ac drive, Phys. Rev. B 112 (2025), 134451. Oct 29

2. J. Zhang, L. F. Jin, B. Zheng, X. F. Jiang, T. T. Chen, C. Xu, and Y. Q. Hu, Algorithm for computing time correlation functions in non-stationary complex dynamic systems, Chin. Phys. B 34 (2025), 038904. March.

3. L. Xiong, N.J. Zhou, S. Q. Hu, L. L. Nian, and B. Zheng, Capturing the dynamics of the phase transition of skyrmions with a nonstationary machine learning approach, Phys. Rev. B111 (2025), 184415, Editor’ Suggestion. May 14.

4. J. Y. Liu, L. L. Nian, L. Xiong, J. T. Lü and B. Zheng, Quantum phase transitions in nonlinear circuit quantum electrodynamics, Phys. Rev. A111 (2025), L040201. April 18.

5. L. Xiong, X. F. Jiang, R. Liu, J. Zhang, J. F. Zhang, J. J. Zheng, and B. ZhengExploring human disease complications with machine learning based on higher-order structures of network, Physica Scripta 100 (2025), 016017. Jan.

6. A.P Xiao, L. Xiong, C. Yang, J.Y. Jiang, and B. Zheng, Domain-wall skyrmion dynamics driven by current, waveguide spin wave and their synergistic acceleration effect, Phys. Rev. B111 (2025), 024402. Jan.

7. Z.Y. Liu, B. Zheng, L.L. Nian, and L. Xiong, Dynamic approach to the two-dimensional nonreciprocal XY model with vision cone interactions, Phys. Rev. E111 (2025), 014131. Jan.

8. W.Y Peng, M.K Wen, X.F Jiang, Y. Li, T.T. Chen, and B. Zheng, Global motion filtered nonlinear mutual information analysis: Enhancing dynamic portfolio strategies, PloS ONE 19 (2024), e0303707. July 7.

9. Y. Luo, Z.Y. Liu, L.L. Nian, C. Cheng, L. Xiong, and B. Zheng, Elliptical spin textures in two-dimensional semimetal with spatial anisotropic Dzyaloshinskii-Moriya interaction, Phys. Rev. B109 (2024), 134414. April 1.

10. J.C. Yue, S.Q. Hu, B. Xu, R.K. Chen, L. Xiong, R.L. Guo, Y.Z. Li, L.L. Nian, J. Shiomi, and B. Zheng, Unraveling the mechanisms of thermal boundary conductance at the graphene-silicon interface: Insights from ballistic, diffusive, and localized phonon transport regimes, Phys. Rev. B109 (2024), 115302. March 7.

11. J. Zhang, B. Zheng, L.F. Jin, Y. Li, and X.F. Jiang, Non-stationary temporal-spatio correlation analysis of information-driven complex financial dynamics, Chin. J. Phys. 88 (2024), 756 - 767.

12. L.L. Nian, S.Q. Hu, L. Xiong, J.T. Lü, and B. Zheng, Photon-assisted electron transport across a quantum phase transition, Phys. Rev. B108 (2023), 085430. Aug. 28.

13. W.Y. Peng, T.T. Chen, B. Zheng, and X.F. Jiang, Spreading Dynamics of Capital Flow Transfer in Complex Financial Networks, Entropy 25 (2023), 1240. Aug. 21.

14. X.F. Jiang, L. Xiong, L. Bai, J. Zhang, N. Zhao, Z.W. Fan, B. Zheng, Toward economic function of elite social networks, Chin. J. Phys. 85 (2023), 776 - 785.

15. J.G. Wang, C.H. Zeng, X. Han, Z.Q. Ma, and B. Zheng, Detecting early warning signals of financial crisis in spatial endogenous credit model using patch-size distribution, Physica A625 (2023), 128925. June 24.

16. L.L. Nian, B. Zheng, and J.T. Lü, Electrically driven photon statistics engineering in quantum-dot circuit quantum electrodynamics, Phys. Rev. B107 (2023), L241405. June 14

17. S.M. Zangi, C. Shukla, A. ur Rahman, and B. Zheng, Entanglement Swapping and Swapped Entanglement, Entropy 25 (2023), 415. Feb. 25.

18. Y.J. He, Y.X. Xia, J.T. Mei, K.S. Zhou, C.Y. Jiang, J.T. Pan, D.F. Zheng, B. Zheng, and H. Zhang, Topological charge-density-vector method of identifying filaments of scroll waves, Phys. Rev. E107 (2023), 014217. Jan. 30.

19. M.K. Wen, L. Xiong, and B. Zheng, Depinning phase transition of antiferromagnetic skyrmions with quenched disorder, Phys. Rev. E106 (2022), 044137. Oct. 26.

20. X.F. Jiang, L. Xiong, L. Bai, J. Lin, J.F. Zhang, K. Yan, J.Z. Zhu, B. Zheng, J.J. Zheng, Structure and dynamics of human complication-disease network, Chaos, Solitons & Fractals 159 (2022), 112633. Sep. 12.

21. L.F. Jin, B. Zheng, J.H. Ma, J. Zhang, L. Xiong, X.F. Jiang, and J.C. Li, Empirical study and model simulation of global stock market dynamics during COVID-19, Chaos, Solitons & Fractals 159 (2022), 112138. April 26.

22. Z.Q. Ma, Y.H. Luo, C.H. Zeng, B. Zheng, Spatiotemporal diffusion as early warning signal for critical transitions in spatial tumor-immune system with stochasticity, Phys. Rev. Res. 4 (2022), 023039. April 14.

23. Z.Q. Ma, C.H. Zeng, B. Zheng, Relaxation time as an indicator of critical transition to a eutrophic lake state: The role of stochastic resonance, EPL 137 (2022), 42001. Feb.

24. J. Zhang, L.F. Jin, B. Zheng, Y. Li, and X.F. Jiang, Simplified calculations of time correlation functions in non-stationary complex financial systems, Physica A589 (2022), 126615. Jan.

25. Z.W. Fan, L. Xiong, and B. Zheng, Bigdata-based investigation of heterogeneous migration and population distribution, EPL 137 (2022), 12004. Jan.

26. L. Xiong, M.H. Jin, and B. Zheng, Thermally activated dynamics of current-driven skyrmions in random media, EPL 136 (2021), 10001. Oct.

27. C. Yang, C.H. Zeng and B. Zheng, Prediction of regime shifts under spatial indicators in gene transcription regulation systems, EPL 135 (2021),58002. Sep.

28. Y.J. He, Q.H. Li, K.S. Zhou, R.H. Jiang, C.Y. Jiang, J.T. Pan, D.F. Zheng, B. Zheng, and H. Zhang, Topological charge-density method of identifying phase singularities in cardiac fibrillation, Phys. Rev. E104 (2021), 014213. July 20.

29. M.H. Jin, L. Xiong, N.J. Zhou, B. Zheng, and T.J. Zhou, Universality classes of the domain-wall creep motion driven by spin-transfer torques, Phys. Rev. E103 (2021), 062119. June.

30. X.F. Jiang, L. Xiong, L. Bai, N. Zhao, J. Zhang, K. Xia, K. Deng, and B. Zheng, Quantifying the social structure of elites in ancient China, Physica A573 (2021), 125976. March 29.


早期论文

1.    郑波、郭硕鸿,格点Schwinger模型的一组准确解,《高能物理与核物理》13(1989)696-700。

2.    郑波,格点Schwinger模型的准确基态,《高能物理与核物理》13(1989)760-764。 

3.    郑波,格点Schwinger模型弦张力的准确计算,《高能物理与核物理》13(1989)860-864。 

4.    郑波,Massive格点Schwinger模型的准确基态和弦张力,《高能物理与核物理》13(1989)956-960。 

5. 郑波、郭硕鸿,一个可解的1+1维U(1)规范模型,《高能物理与核物理》,14(1990)152-155。 

6. 郑波、郭硕鸿,一个1+1维格点U(1)规范模型的准确求解,《高能物理与核物理》14(1990)282-285。 

7. 郑波,可解的1+1维格点U(1)规范模型与费米子加倍问题,《高能物理与核物理》14(1990)375-379。 


Review articles 

1.    B. Zheng, Monte Carlo simulations of short-time critical dynamics, Int. J. Mod. Phys. B12 (1998), 1419-1484. June 10.  SCI citations 254, Google 297

2.    B. Zheng, Numerical Simulations of Critical Dynamics far from Equilibrium,in Computer Simulation Studies in Condensed-Matter Physics XVII, 2004, edited by D.P. Landau, Springer.

3.    B. Zheng, 金融市场的微观动力学及其数值模拟研究, 《管理学报》 6 卷 (2009年) 12 期, 1608-1613. Dec.

4.    B. Zheng, 金融动力学的时空关联与大波动特性 - 兼谈中西方金融市场的对比研究, 《物理》 39 卷 (2010年) 2 期, 95-100. Feb. 12.

5.    B. Zheng, X.F. Jiang, and P.Y. Ni, A mini-review on econophysics -- comparative study of Chinese and western financial markets, Chin. Phys. B23 (2014), 078903. July  SCI citations 11, Google 15