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管曙光——理性告诉我们,世界是非理性的

物理与电子科学学院

个人资料

  • 部门: 物理与电子科学学院
  • 性别:
  • 专业技术职务: 教授
  • 毕业院校: NUS
  • 学位: 博士
  • 学历:
  • 联系电话:
  • 电子邮箱: sgguan@phy.ecnu.edu.cn
  • 办公地址: 闵行校区物理楼437
  • 通讯地址:
  • 邮编:
  • 传真:

教育经历

1991, B. Sc., Dept. of Physics, Beijing Normal University.

1994, M. Sc., Dept. of Physics, Beijing Normal University.

2003, Ph. D., Dept. of Physics, National University of Singapore (NUS)


工作经历

08/1994-08/1996, Teaching assistant, Dept. of Physics, Tsinghua University

08/1996-02/1998, Lecturer, Dept. of Physics, Tsinghua University

08/2000-07/2001, Teaching assistant, Dept. of Computational Science, NUS

08/2001-06/2003, Research Fellow, Dept. of Computational Science, NUS

07/2003-09/2009, Research Scientist, Temasek Laboratories, NUS

09/2009-Present,  Professor, Dept. of Physics, ECNU


个人简介

        高中毕业于黄冈中学,保送进入北京师范大学物理系,获学士和硕士学位;1994-1998年在清华大学物理系工作。后出国新加坡,于2003年获得新加坡国立大学(NUS)理论物理博士学位,并担任新加坡淡马锡国家实验室研究员。2009年回国任华东师范大学物理系教授、博士生导师。

        科研方面:主持和参与国家自然科学基金重点项目、面上项目、上海市自然科学基金、上海市科委重点项目等,在物理学顶级期刊Phys. Rep.、Phys. Rev. Lett.以及主流期刊New J. Phys.、Phys. Rev. E等发表学术论文90余篇,SCI引用1800余次;担任Chaos, Solitons & Fractals(一区)的Editor;荣获教育部高等学校科学研究优秀成果奖二等奖。

        教学方面:长期主讲本科《光学》课程,主持上海市重点课程建设、上海市在线课程建设、华东师范大学慕课建设等项目。波动光学慕课入选国家精品在线开放课程,光学入选上海市精品课程国家级线上线下混合式一流本科课程以及上海高校优质混合式在线课程示范案例曾荣获上海市高等教育教学成果一等奖、上海市“为人、为师、为学”先进典型、上海市教卫工作党委系统“优秀党员.师德标兵”、教育部基础学科拔尖学生培养计划2.0优秀教师奖上海市归侨侨眷先进个人、宝钢优秀教师奖、华东师范大学杰出教学贡献奖、华东师范大学教学成果特等奖等现任中国物理学会教学委员会委员、《物理教学》常务副主编。

社会兼职

一、Chaos,Solitons & Fractals(一区), Editor

二、《物理教学》(中国物理学会主办)常务副主编

三、中国物理学会教学委员会委员


研究领域

非线性动力学和复杂系统;

混沌控制、同步;

斑图生成;

复杂网络分析;

网络动力学等

招生与培养

开授课程

1.《光学》

2.《波动光学》慕课


科研项目


2009年回国以来,主持国家自然科学基金、上海市浦江人才计划基金、上海市教委科研创新计划重点项目、上海市自然科学基金、并作为骨干成员参与国家自然科学基金理论物理重点项目2项。



学术成果

在主流国际期刊发表论文百余篇,共被SCI引用1800余次。


Selected Publications


C. Xu, X. Tang, H. Lu, K. Alfaro-Bittner, S. Boccaletti, M. Perc, and S. Guan*, Collective dynamics of heterogeneously and nonlinearly coupled phase oscillators, Physical Review Research 3, 043004 (2021).


管曙光,中国科学物理学力学天文 50, 010504 (2020).


S. Boccaletti, J. A. Almendral, S. Guan*, I. Leyva*, Z. Liu*, I. Sendiña-Nadal, Z. Wang, Y. Zou, Explosive transitions in complex networks’ structure and dynamics: Percolation and synchronization, Phys. Rep. 660, 1 (2016).


H. Bi, X. Hu, S. Boccaletti, X. Wang, Y. Zou, Z. Liu and S. Guan*, Coexistence of quantized, time dependent, clusters in globally coupled oscillators, Phys. Rev. Lett. 117, 204101 (2016).


T. Qiu, Y. Zhang, J. Liu, H. Bi, S. Boccaletti, Z. Liu, and S. Guan*,  Landau damping effects in the synchronization of conformist and contrarian networks, Sci. Rep. 5, 18235 (2015).


X. Zhang, S. Boccaletti, S. Guan, and Z. Liu, Explosive synchronization in adaptive and multilayer networks, Phys. Rev. Lett. 114, 038701 (2015).


Main Publications


96. X. Wang, M. Tang, S. Guan*, and Y. Zou, Quantifying time series complexity by multi-scale 

      transition network approaches,Physica A 622, 128845(2023).


95. C. Xu, H. Yu, and S. Guan*Dynamical origin of the explosive synchronization with partial 

      adaptive coupling, Chaos, Solitons & Fractals 172, 113538 (2023).


94. C. Xu, Y. Zhai, Y. Wu, Z. Zheng, and S. Guan*Enhanced explosive synchronization in heterogeneous 

      oscillator populations with higher-order interactions, Chaos, Solitons & Fractals 170, 113343 (2023).


93. L. Han, Z. Lin, M. Tang, Y. Liu, and S. Guan*, Impact of human contact patterns on epidemic spreading in 

      time-varying networks, Phy. Rev. E 107, 024312 (2023).


92. L. Zhao, Z. Sun, M. Tang, S. Guan∗, and Y. Zou, Learning successive weak synchronization transitions and 

      coupling directions by reservoir computing, Chaos, Solitons & Fractals 168, 113139 (2023).


91. S. Yu, J. Zhou, and S. GuanThe structure of uni-directional chain for the synchronization of 

      networked chaotic systems, Chaos, Solitons & Fractals 164, 112607 (2022).


90. J. Lu, R. V. Donner, D. Yin, S. Guan*, and Y. ZouPartial event coincidence analysis for distinguishing    

      direct and indirect coupling in functional network constructionChaos 32, 063134 (2022).


89. D. Wu, Y. Liu, M. Tang, X. Xu, S. Guan*, Impact of hopping characteristics of inter-layer commuters on epidemic spreading in multilayer networks, Chaos, Solitons & Fractals 159, 112100 (2022).


88. X. Wang, X. Han, Z. Chen, Q. Bi, S. Guan*, Y. Zou, Multi-scale transition network approaches for nonlinear time series analysis, Chaos, Solitons & Fractals 159, 112026 (2022).


87. J. Qu, Y. Liu, M. Tang, S. Guan*, Identification of the most influential stocks in financial networks, Chaos, Solitons & Fractals 158, 111939 (2022).


86. Y. Zhao, J. Zhou, Y. Zou, S. Guan, Y. Gao, Characteristics of edge-based interdependent networks, Chaos, Solitons & Fractals 156, 111819 (2022).


85. C. Xu, X. Tang, H. Lu, K. Alfaro-Bittner, S. Boccaletti, M. Perc, and S. Guan*, Collective dynamics of heterogeneously and nonlinearly coupled phase oscillators, Physical Review Research 3, 043004 (2021).


84. J. Xiao, Z. Chen, Q. Bi, Y. Zou, and S. Guan*, Distinctive roles of hysteresis, amplitude death and oscillation death in generating fast-slow phenomena in parametrically and externally excited systems, Chaos, Solitons & Fractals 150, 111189 (2021).


83. J. Qu, M. Tang, Y. Liu, and S. Guan*, The relative importance of structure and dynamics on node influence in reversible spreading processes, Frontiers of Physics 16, 51503 (2021).


82. M. Huang, Z. Sun, R. V. Donner, J. Zhang, S. Guan*, and Yong Zou, Characterizing dynamical transitions by statistical complexity measures based on ordinal pattern transition networks, Chaos 31, 033127 (2021).


81. S. Huo, C. Tian, M. Zheng, S. Guan, C. Zhou, and Z. Liu, Spatial multi-scaled chimera states of cerebral cortex network and its inherent structure-dynamics relationship in human brain, National Science Review 8, nwaa125, 2021.


80. J. Qu, M. Tang, Y. Liu, and S. Guan, Identifying influential spreaders in reversible process, Chaos, Solitons & Fractals 140, 110197 (2020).


79. L. Han, Z. Lin, M. Tang, J. Zhou, Y. Zou, and S. Guan, Impact of contact preference on social contagions on complex networks, Phys. Rev. E 101, 042308 (2020).


78.  J. Zhang, S. Boccaletti, Z. Liu, and S. Guan*, Synchronization of phase oscillators under asymmetric and bimodal distributions of natural frequencies, Chaos, Solitons and Fractals 136, 109777 (2020).


77.管曙光,中国科学: 物理学力学天文学 50, 010504 (2020).


76.Z. Chen, Y. Zou, S. Guan*, Z. Liu, and J. Kurths, Fully solvable lower dimensional dynamics of Cartesian product of Kuramoto models, New J. Phys. 21, 123019(2019).


75.T. Qiu, S.Boccaletti, Z. Liu, and S. Guan*,Charactering non-stationary  coherent states in globally coupled conformist andcontrarian  oscillators, Phys. Rev. E 100, 052310 (2019).


74.C. Xu, S. Boccaletti, Z. Zheng,and S. Guan*, Universal phasetransitions to synchronization in Kuramoto-like models with heterogeneouscoupling, New J. Phys. 21, 113018(2019).


73.C. Xu, J. Gao, S. Boccaletti,Z. Zheng, and S. Guan*, Synchronizationin   starlike networks of phase oscillators, Phys. Rev. E 100,  012212(2019).


72. X. Li, T. Qiu, S. Boccaletti, I. Sendiña-Nadal, Z. Liu, and S. Guan*, Synchronization clusters emerge as the result of a global couplingamong classical phase oscillators, New J. Phys. 21, 053002 (2019).

NJP21-053002(2019).pdf


71. Y. Ruan, R. V. Donner, S. Guan, and Y. Zou, Ordinal partition transition network based complexity measures for inferring coupling direction and delay from time series, Chaos 29,  043111 (2019).

Chaos 29-043111 (2019).pdf


70. X. Li, J. Zhang, Y. Zou, and S. Guan*, Clustering and Bellerophon state in Kuramoto model with second-order coupling, Chaos 29, 043102 (2019).

Chaos 29- 043102 (2019).pdf


69. J. Zhang, X. Li, Y. Zou, and S. Guan*, Novel transition and Bellerophon state in coupled Stuart–Landau oscillators, Front. Phys. 14, 33603 (2019). 

FOP14-33603 (2019).pdf


68.  C. Xu, S. Boccaletti, S. Guan*, and Z. Zheng*, Origin of Bellerophon states in globally coupled phase oscillators, Phys. Rev. E 98, 050202(R) (2018).

PhysRevE.98.050202.pdf


67.  S. Li, X. Wang,  and S. Guan, Periodic coupling suppreses synchronization in coupled phase oscillators, New J. Phys.20, 113013 (2018).

NJP 20-113013(2018).pdf


66.  T. Qiu, I. Bonamassa, S. Boccaletti, Z. Liu, and S. Guan*, Rhythmic synchronization and hybrid collective states of globally coupled oscillators, Sci. Rep. 8, 12950 (2018).


65. H. Guo, J. Zhang, Y. Zou, and S. Guan*, Cross and joint ordinal partition transition networks for multivariate time series analysis, Front. Phys. 13, 130508 (2018).


64. C. Wang, Y. Zou, S. Guan, and J. Kurths, Cartesian Product of Synchronization Transitions and Hysteresis, New J. Phys. 19, 123036  (2017).

NJP19-123036 (2017).pdf


63. J. Zhou, Y. Zou, S. Guan, Z. Liu, and S. Boccaletti, Connection adaption for control of networked mobile chaotic agents, Sci. Rep.7, 16069 (2017).

Sci.Rep.7 16069(2017).pdf


62. L. Ying, J. Zhou, M. Tang, S. Guan, and Y. Zou, Mean-field approximations of fixation time distributions of evolutionary game dynamics on graphs, Front. Phys. 13, 130201 (2018). 

FOP13-130201 (2018).pdf


61. H. Guo, Ramos, A. Ramos, E. Macau, Y. Zou, and S. Guan, Constructing regional climate networks in the Amazonia during recent drought events, PLOS ONE 12, e0186145 (2017).


60. C. Tian, H. Bi, X. Zhang, S. Guan, and Z. Liu, Asymmetric couplings enhance the transition from chimera state to synchronization, Phys. Rev. E 96, 052209 (2017).


59. X. Nie, M. Tang, Y. Zou, S. Guan, and J. Zhou, The impact of heterogeneous response on coupled spreading dynamics in multiplex networks, Phyaica A 484, 225 (2017).

Physica A 484-225(2017).pdf


58. H. Bi, Y. Li, L. Zhou,  and S. Guan*, Nontrivial standing wave state in frequency-weighted Kuramoto model, Frontiers of Physics 12,126801 (2017).

FOP12-126801(2017).pdf


57. W. Zhou, Y. Zou, J. Zhou, Z. Liu, and S. Guan*, Intermittent Bellerophon state in frequency-weighted Kuramoto model, Chaos 26,123117 (2016).

Chaos 26-123117 (2016).pdf


56 C. Xu, J. Gao, H. Xiang, W. Jia, S. Guan,  and Z. Zheng, Dynamics of phase oscillators with generalized frequency-weighted coupling, Phys. Rev. E 94, 062204 (2016).

PhysRevE.94.062204.pdf


55  J. Zhou, Y. Zou, S. Guan, Z. Liu, and S. Boccaletti, Synchronization in slowly switching networks of coupled oscillators, Sci. Rep. 6, 35979 (2016).

srep6-35979(2016).pdf


54  S. Boccaletti, J. A. Almendral, S. Guan*, I. Leyva*, Z. Liu*, I. Sendiña-Nadal, Z. Wang, Y. Zou,

Explosive transitions in complex networks’ structure and dynamics: Percolation and synchronization,

Phys. Rep. 660, 1(2016).


53  T. Qiu, S. Boccaletti, I. Bonamassa, Y. Zou, J. Zhou, Z. Liu, and S. Guan*, Synchronization and Bellerophon states in conformist and contrarian oscillators, Sci. Rep. 6, 36713 (2016).

srep6-36713(2016).pdf


52 H. Bi, X. Hu, S. Boccaletti, X. Wang, Y. Zou, Z. Liu and S. Guan*, Coexistence of quantized, time dependent, clusters in globally coupled oscillators, Phys. Rev. Lett. 117, 204101 (2016).

PRL117-204101(2016).pdf


51 L. Zhang, L. Ying, J. Zhou, S. Guan, and Y. Zou, Fixation probabilities of evolutionary coordination games on two coupled populations, Phys. Rev. E 94, 032307 (2016).

PRE94-032307(2016).pdf


50 X. Zhang, H. Bi, S. Guan, J. Liu and Z. Liu, Model bridging Chimera state and explosive synchronization, Phys. Rev. E 94, 012204 (2016).

PRE94-012204(2016).pdf


49 R. Zhang, Y. Zou, J. Zhou, Z.-K. Gao, and S. Guan, Visibility graph analysis for re-sampled time series from auto-regressive stochastic processes, Commun Nonlinear Sci Numer Simulat 42, 396 (2017).

Commun Nonlinear Sci Numer Simulat 42-396 (2017).pdf


48 C. Xu, Y. Sun, J. Gao, T. Qiu, Z. Zheng, and S. Guan*,  Synchronization of phase oscillators with frequency weighted coupling, Sci. Rep. 6, 21926 (2016).

Sci.Rep.6-21926(2016).pdfSI-Sci.Rep.6-21926(2016).pdf


47 X. Zhang, S. Guan, Y. Zou, X. Chen, and Z. Liu, Suppressing explosive synchronization by
contrarians,
EPL 113, 28005 (2016).

EPL113-28005 (2016).pdf


46 R. Yuan, S. Ma et al., Core level regulatory network of osteoblast as molecular mechanism for osteoporosis and treatment, Oncotarget 7, 3692 (2016).  

Oncotarget7-3692 (2016).pdf


45 T. Qiu, Y. Zhang, J. Liu, H. Bi, S. Boccaletti, Z. Liu, and S. Guan*,  Landau damping effects in the synchronization of conformist and contrarian networks, Sci. Rep. 5, 18235 (2015).

Sci.Rep.5-18235(2015).pdf


44. M. Zheng, C. Wang, J. Zhou, M. Zhao, S. Guan, Y. Zou, and Z. Liu, Non-periodic outbreaks of
recurrent epidemics and its network modelling,
 Sci. Rep. 5, 16010 (2015).

Sci.Rep.5-16010(2015).pdf


43. W. Zhou, L. Chen, H. Bi, X. Hu, Z. Liu, and S. Guan*,  Explosive synchronization with asymmetric

 frequency distributions, Phys. Rev. E 92, 012812 (2015).

PhysRevE.92.012812(2015).pdf


42. S. Ma, H. Bi, Y. Zou, Z. Liu,  and S. Guan*, Shuttle-run synchronization in mobile ad hoc networks,

Front. Phys. 10, 100505 (2015).   

Front.Phys.10-100505(2015).pdf


41. L. Zhang, Y. Zou, S. Guan, and Z. Liu, Analytical description for the crtical fixations of evolutionary

 coordination games on finite complex structured populations, Phys. Rev. E 91, 042807 (2015).

PhysRevE.91.042807(2015).pdf


40. X. Zhang, S. Boccaletti, S. Guan, and Z. Liu, Explosive synchronization in adaptive and multilayer

networks, Phys. Rev. Lett. 114, 038701 (2015).

PRL114-038701(2015).pdfSI-PRL114-038701(2015).pdf


      39. X. Hu, S. Boccaletti, W. Huang, X. Zhang, Z. Liu, S. Guan*, and C.-H. Lai, Exact solution for the

      first-order synchronization transition in a generalized Kuramoto model,  Sci. Rep. 4, 7262 (2014). 

       Sci.Rep.4-7262(2014).pdf


      38. H. Bi, X. Hu, X. Zhang, Y. Zou, Z. Liu, and S. Guan*, Explosive oscillation death in coupled Stuart-

       Landau oscillators,EuroPhys. Lett.108, 50003 (2014).   

        EPL108-50003(2014).pdf


       37. W. Huang, X. Zhang, X. Hu, Y. Zou, Z. Liu, and S. Guan*, Variation of critical point of aging  

       transition in a networked oscillators system, Chaos 24, 023122 (2014).

       Chaos24-023122(2014).pdf


       36. M. Li, S. Guan*, C. Wu, X. Gong, K. Li, J. Wu, Z. Di, and C.-H. Lai, From sparse to dense

       and  from assortative to disassortative in online social networks. Sci. Rep. 4, 4861 (2014). 

       Sci.Rep.4-4861(2014).pdf


       35. M. Li, H. Zou, S. Guan*, X. Gong, K. Li, Z. Di, and C.-H. Lai, A coevolving model based on

       preferential triadic closure for social media networks, Sci. Rep. 3, 2512 (2013). 

        Sci.Rep.3-2512(2013).pdf


       34. G. Su, S. Guan, and Z. Liu, Explosive synchronization based on the mutual correlation of co-

       evolving networks, EuroPhys. Lett. 103, 48004 (2013).

        EPL103-48004(2013).pdf


       33. Y. Dong, W. Huang, Z. Liu, and S. Guan*, Network analysis to time series under the constraint of   

       fixed  nearest neighbors, Physica A 392, 967 (2013).

        Physica A292-967(2013).pdf


       32. K. Li, X. Gong, S. Guan, and C.-H. Lai, Efficient algorithm based on neighbourhood overlap for

        community identification in complex networks, Physica A 391, 1788 (2012).

        Physica A391-1788(2012).pdf


       31. M. Li‚ S. Guan*‚ and C.-H. Lai‚ Formation of modularity in a model of evolving  n

        etworks‚ EuroPhys.  Lett. 95‚ 58004 (2011).

        EPL95-58004(2011).pdf


       30. K. Li‚ X. Gong‚ S. Guan‚ and C.-H. Lai‚ Analysis of traffic flow on complex networks‚

       Mod. Phys. Lett. B 25‚ 1419 (2011).

       IJMPB25-1419(2011).pdf


       29. M. Li‚ S. Guan*‚ and C.-H. Lai‚ Spontaneous formation of dynamical groups in an  adaptive

       networked system‚ New J. Phys. 12‚ 103032 (2010).

       NJP12-103032(2010).pdf


       28. S. Guan*‚ X. Gong‚ K. Li‚ Z. Liu‚ and C.-H. Lai‚ Characterizing generalized synchronization  on

       complex networks‚ New J. of Phys. 12‚073045 (2010).

       NJP12-073045(2010).pdf


       27. Y. Zhou‚ J. Zhou‚ X. Wang‚ S. Guan‚ C.-H. Lai‚ and Z. Liu‚ Resonance effect of direction-

       phase clusters in scale-free networks‚ EuroPhys. Lett. 90‚ 30005 (2010).

       EPL90-30005(2010).pdf


       26. X. Wang‚ S. Guan‚ Y.-C. Lai‚ B. Li‚ and C.-H. Lai‚ Desynchronization and on-off intermittency

       in complex networks‚ Europhys. Letts. 88‚ 28001 (2009).

       EPL88-28001(2009).pdf


        25. H. Zou‚ S. Guan‚ and C.-H. Lai‚ Dynamical formation of stable irregular transients in  

        discontinuous map systems‚ Phys. Rev. E 80‚ 046214 (2009) .

        PRE80-046214(2009).pdf


        24. W. Liu‚ X. Wang‚ S. Guan‚ and C.-H. Lai‚ Transition to amplitude death in scale-free networks‚

        New. J. Phys. 11‚ 093016 (2009).

        NJP11-093016(2009).pdf


        23. X. Wang‚ S. Guan‚ and C.-H. Lai‚ Protecting infrastructure networks against cost-based attacks‚

        New. J. Phys. 11‚ 033006 (2009).

        NJP11-033006(2009).pdf


        22. S. Guan*‚ X. Wang‚ X. Gong‚ K. Li‚ and C.-H. Lai‚ The development of generalized  

        synchronization on complex networks‚ Chaos 19‚ 013130 (2009).

        Chaos19-013130(2009).pdf


        21. S. Guan*‚ X. Wang‚ K. Li‚ and C.-H. Lai‚ The manyfaces of synchronization of networks‚

        Mod. Phys. Lett. B 23‚ 1983 (2009).

        MPLB23-1983(2009).pdf


        20. K. Li‚ S. Guan‚ X. Gong‚ and C.-H. Lai‚ Synchronization stability of general complex dynamical

        networks with time-varying delays‚ Phys. Lett. A 372‚ 7133 (2008).

        PLA372-7133(2008).pdf


        19. X. Wang‚ L. Huang‚ S. Guan‚ Y.-C. Lai‚ and C.-H. Lai‚ Onset of synchronization in complex

        gradient networks‚ Chaos 18‚ 037117 (2008).

        Chaos18-037117(2008).pdf


        18. X. Gong‚ S. Guan‚ X. Wang‚ and C.-H. Lai‚ Stability of the steady state of delay-coupled chaotic

         maps on complex networks‚ Phys. Rev. E 77‚ 056212 (2008).

         PRE77-056212(2008).pdf


        17. S. Guan*‚ X. Wang‚ Y.-C. Lai‚ and C.-H. Lai‚ Transition to global synchronization inclustered

   networks‚ Phys. Rev. E 77‚ 046211 (2008).  

   PRE77-046211(2008).pdf


        16. S. Guan*‚ X. Wang‚ K. Li‚ B.-H. Wang‚ and C.-H. Lai‚ Synchronizability of network ensembles

         with prescribed statistical properties. Chaos 18‚ 013120 (2008). 

         Chaos18-013120(2008).pdf


        15. J. Ma‚ S .Guan*‚ and C.-H. Lai‚ Disorder effect on electronic and optical properties of

         dopedcarbon nanotubes‚ Phys. Rev. B 74‚ 205401 (2006). 

         PRB74-205401(2006).pdf


         14. S. Guan*‚ K. Li‚ and C.-H. Lai‚ Chaotic synchronization through coupling strategies‚

         Chaos16‚  023107  (2006). 

         Chaos16-023107(2006).pdf


         13. S. Guan*‚ X. Wang‚ and C.-H. Lai‚ Frequency locking by external force from a dynamical system

         with strange nonchaotic attractor‚ Phys. Lett. A 354‚ 298 (2006).

         PLA354-298(2006).pdf


         12. S. Guan*‚ Y.-C. Lai‚ and C.-H. Lai‚ Effect of noise on generalized chaotic synchronization‚ 

          Phys. Rev. E 73‚ 046210 (2006). 

          PRE73-046210(2006).pdf


         11. S. Guan*‚ Y.-C. Lai‚ C.-H. Lai‚ and X. Gong‚ Understanding synchronization induced by

         “common noise”‚ Phys. Lett. A 353‚ 30 (2006). 

         PLA353-30(2006).pdf


         10. G. Tang‚ S. Guan‚ and G. Hu‚ Controlling flow turbulence with moving controllers‚ Eur. Phys. J.

          B 48‚ 259 (2005). 

          EPJB48-259(2005).pdf


          9. S. Guan*‚ C.-H. Lai‚ and G. W. Wei‚ Phase synchronization between two essentially different 

          chaoticsystems‚ Phys. Rev. E 72‚ 016205 (2005).

          PRE72-016205(2005).pdf


          8. S. Guan*‚ C.-H. Lai‚ and G. W. Wei‚ Bistable chaos without symmetry in  

           generalized synchronization‚Phys. Rev. E 71‚ 036209 (2005). 

           PRE71-036209(2005).pdf


           7. S. Guan*‚ C.-H. Lai‚ and G. W. Wei‚ Controllability of flow turbulence‚ Phys. Rev. E 69‚

           066214 (2004).

           PRE69-066214(2004).pdf


           6. S. Guan‚ C.-H. Lai‚ and G. W. Wei‚ Characterizing the spatiotemporal dynamics of turbulence‚

           Computer Physics Communications 155‚ 77 (2003). 

            CPC155-77(2003).pdf


          5. S. Guan‚ Y. Zhou‚ G. W. Wei‚ and C.-H. Lai‚ Controlling flow turbulence‚ Chaos 13‚ 64 (2003).
          Chaos13-64(2003).pdf


          4. S. Guan‚ C.-H. Lai‚ and G. W. Wei‚ Geometry and boundary control of pattern formation
           and competition‚ Physica D 176‚ 19 (2003). 
           Physica D176-19(2003).pdf


          3. S. Guan‚ C.-H. Lai‚ and G. W. Wei‚ A wavelet method for the characterization ospatiotemporal 

          patterns‚ Physica D 163‚ 49 (2002). 

          Physica D163-49(2002).pdf


          2. S. Guan‚ C.-H. Lai‚ and G. W. Wei‚ Fourier-Bessel analysis of patterns in a circular 

          domain‚ Physica D 151‚ 83 (2001).  

          Physica D151-83(2001).pdf


          1. S. Guan and A. Qi‚ Contributions of memory B-cells to second immune response‚ B.

          Math. Biol.57‚ 713 (1995).

          BMB57-713 (1995).pdf


荣誉及奖励

2023《光学》课程入选上海市高校示范性本科课堂

2021上海市高等教育教学成果一等奖(排名第一)

2021华东师范大学教学成果特等奖(排名第一)

2021年度基础学科拔尖学生培养计划2.0优秀教师奖

2021上海市教卫工作党委系统“优秀党员.师德标兵”

2021上海市高校教师教学创新大赛二等奖(部属高校正高组第二名)

2020上海市归侨侨眷先进个人

2020华东师范大学师德标兵

2019教育部高等学校科研成果二等奖

2019华东师范大学本科教学成果奖

2019《光学》课程入选国家级线上线下混合式一流本科课程

2019上海市“为人、为师、为学”先进典型

2019《光学》翻转课堂入选首批上海高校优质混合式在线课程示范案例

2018 《光学》课程入选上海市精品课程

2018华东师范大学研究生教学成果一等奖(排名第二)

2018华东师范大学杰出教学贡献奖

2018华东师范大学科学技术一等奖(排名第二)

2017物理与材料科学学院“最受毕业生喜爱的教师”

2017宝钢优秀教师奖

2017《波动光学》慕课入选国家精品在线开放课程

2017上海市高等教育教学成果二等奖(排名第二)

2016华东师范大学本科教学年度贡献奖

2016“爱课程”年度优秀教师奖

2015华东师范大学“能达”教学奖

2012华东师范大学优秀任课教师



指导学生所获荣誉及奖励:

2020国家公派研究生项目(攻读博士),陈则文

2020国家公派研究生项目(博士生交流),韩礼雷

2017“国创计划十周年庆典”暨第十届全国大学生创新创业年会优秀论文奖,邱添

2017上海市优秀毕业生(博士)、智慧奖学金,毕宏杰

2016国家公派研究生项目(博士生交流),毕宏杰

2016第十二届全国复杂网络大会“优秀学生论文奖”,邱添

2016级上海市优秀毕业生(学士),邱添

2016级上海市优秀毕业生(学士),张岳

2016校级优秀本科毕业论文,邱添

2016校级优秀本科毕业论文,张岳

015“挑战杯”全国大学生课外学术科技作品竞赛上海市三等奖,邱添、张岳、刘杰

2015“大夏杯”大学生课外学术科技作品竞赛三等奖,邱添、张岳、刘杰

2015“挑战杯”全国大学生课外学术科技作品竞赛华师大预选赛二等奖,邱添、张岳、刘杰

2015年优秀本科毕业论文,李馣

2015年国家奖学金(硕士生),周文昌

2014年优秀本科毕业论文,陈鲁敏

2013年优秀本科毕业论文,许诗蕾