电子信息科学与技术系

赵文垒

发布日期:2026-08-16     点击量:

个人信息

         姓名:赵文垒 性别:男 民族:汉

出生年月:1981/10/02 职称:教授(博导)

政治面貌:中国农工民主党

工作单位:江西理工大学数理学院

联系电话:18370979334

电子信箱:wlzhao@jxust.edu.cn

所属学科:电子科学与技术

ORCID iD: https://orcid.org/0000-0002-1496-8528

科研成果

1. 主持项目

1).国家自然科学基金地区项目:“非厄米量子映射系统的非时序关联子研究”,32万元,12365002,执行年限:2024/01-2027/12.

2).江西省科学技术厅自然科学基金计划重点项目(科技厅全额资助):“周期调控相互作用诱导超冷原子新奇输运现象研究”,20万元,20224ACB201006,执行年限:2023/01-2025/12.

3).国家自然科学基金地区项目:“量子动力学超快扩散问题研究”,38万元,12065009,执行年限:2021/01-2024/12.

4).国家自然科学基金理论物理专款合作研究项目:“玻色-爱因斯坦凝聚体的扩散和定向输运研究”,20万元,11447016,执行年限:2015/01-2017/12.

2.学术论文:

[1] Shaowen Lan,Wen-Lei Zhao*, Yi Chao and Jie Liu,Caustics in a Floquet system with ratchet potential,Chin. Phys. B(2026).

[2] Jiaming Zhang, Wenxuan Song, Hanhao Li, Zhiye Kuang, Zhihua Xiong, Longwen Zhou, Jie Liu, andWen-Lei Zhao*, Observing the exponential growth of the eigenmodes in the absence of coalescence for anon-Hermitian circuit with an unavoidable inductor dissipation,Phys. Rev. A112, 052211 (2025)

[4]Wenxuan Song,Jiaming Zhang, Lihao Hua, Zhihua Xiong, andWen-Lei Zhao*, Emergence of classical random walk from non-Hermitian effects in quantum kicked rotor,Entropy27, 288(2025).

[4]Jiejin Shi, Lihao Hua, Wenxuan Song*, andWen-Lei Zhao*,Self-interaction induced phase modulation for directed current, energy diffusion and quantumscrambling in a Floquet ratchet system,Phys. Rev. A111,032207 (2025).

[5]Liang Huo, Han Ke,andWen-Lei Zhao*,Dynamical transition of quantum scrambling in a non-Hermitian Floquet synthetic system, J Stat Phys 191, 152 (2024).

[6] Wen-Lei Zhao*,Guanling Li,and Jie Liu*,Phase modulation of directed transport, energy diffusion and quantum scrambling ina Floquet non-Hermitian system,Phys. Rev.Research6, 033249(2024).

[7]Wen-Lei Zhao*and Jie Liu*,Quantum criticality at the boundary of the non-Hermitian regime of a Floquet system,Phys. Rev. A109, 052215(2024).

[8] Han Ke, Jiaming Zhang, Liang Huo, andWen-Lei Zhao*, Dynamical localization in a non-Hermitian Floquet synthetic system,Chin. Phys. BRapidCommunication,33, 050507 (2024),Highlights.

[9] Guanling Li andWen-Lei Zhao*,Quadratic growth of Out-of-time ordered correlators in quantum kicked rotor model,Entropy 26, 229(2024).

[10] Jian-Zheng Li, Guan-Ling Li, andWen-Lei Zhao*,Super-Ballistic Diffusion in a Quasi-Periodic Non-Hermitian Driven System withNonlinear Interaction,Chin. Phys. B32, 096601(2023).

[11] Wen-Lei Zhao*,Ru-Ru Wang, Han Ke, andJie Liu*,Scaling laws of the out-of-time-order correlators at the transition to the spontaneous PT-symmetry breaking in a Floquet system,Phys. Rev. A107, 062201 (2023).

[12] Jian-Zheng Li,Wen-Lei Zhao*,andJie Liu*,Coexistence of directed momentum current and ballistic energy diffusion in coupled non-Hermitian kicked rotors,Phys. Rev. A107, 032208(2023).

[13] Wen-Lei Zhao*and Ru-Ru Wang, Scaling laws of out-of-time-order correlators in a non-Hermitian kicked rotor model,Front. Phys 11, 1130225(2023).

[14]Wen-Lei Zhao*and Huiqian Zhang,Dynamical stability in a non-Hermitian kicked rotor model,Symmetry 15, 113 (2023).

[15]Kai-Qian Huang, Wei-Lin Li,Wen-Lei Zhao*, and Zhi Li*,Characterizing entanglement in non-Hermitian chaotic systems via out-of-time ordered correlators,Chin. Phys. B 31, 090301 (2022).

[16]Wen-Lei Zhao*,Quantization of Out-of-Time-Ordered Correlators in non-Hermitian Chaotic Systems,Phys. Rev. Research 4, 023004 (2022).

[17]Wen-Yuan Wang,Wen-Lei Zhao,andJie Liu*,Numerical simulation onmany-body quantum chaos of ultracold atoms with synthetic gauge fields,Results in Physics 34,105222(2022).

[18]Wen-Yuan Wang*andWen-Lei Zhao*,Protected quantum coherence by gain and loss in a noisy quantum kicked rotor,J. Phys.: Condens. Matter 34, 025403 (2022).

[19]Kai-Qian Huang,Wen-Lei Zhao*, andZhi Li*,Effective protection of quantum coherence by a non-Hermitian driving potential,Phys. Rev. A 104, 052405 (2021).

[20]Wen-Lei Zhao*,Yue Hu, Zhi Li*, and Qian Wang*,Super-exponential growth ofOut-of-time-ordered correlators,Phys. Rev. B 103, 184311 (2021).

[21]Wen-Lei Zhao*,Longwen Zhou*, Jie Liu*, Peiqing Tong*, and Kaiqian Huang,Super-exponential diffusion in nonlinear non-Hermitian systems,Phys. Rev. A 102, 062213 (2020).

[22]Wen-Lei Zhao*,Pengkai Gong, Jiaozi Wang, and Qian Wang*,Chaotic dynamics of complex trajectory and its quantum signature,Chin. Phys. B29, 120302 (2020).

[23]Kaiqian Huang, Jiaozi Wang,Wen-Lei Zhao*and Jie Liu*,Chaotic dynamics of a non-Hermitian kicked particle,J. Phys.: Condens. Matter 33, 055402 (2021).

[24]Wen-Lei Zhao*and Quan-Lin Jie,Quantum to classical transition induced by a classically small influence,Chin. Phys. B 29, 080302 (2020).

[25]Wen-Lei Zhao*,Jiaozi Wang,Wen-Ge Wang*,Quantum-classical correspondence in a nonlinear Gross-Pitaevski system,J. Phys. A: Math. Theor. 52, 305101 (2019).

[26]Wen-Lei Zhao*,Jiaozi Wang*, Xiaohui Wang, and Peiqing Tong*,Directed momentum current induced by the PT-symmetric driving,Phys. Rev. E, 99, 042201 (2019).

[27]R. W. Bomantara,Wenlei Zhao,Longwen Zhou*, and Jiangbin Gong*,Nonlinear Dirac cones,Phys. Rev. B96, 121406 (2017).

[28]Wen-Lei Zhao,Jiangbin Gong*, Wen-Ge Wang*, Giulio Casati, Jie Liu, and Li-Bin Fu*,Exponential wave-packet spreading via self-interaction time modulation,Phys. Rev.A 94, 053631 (2016).

[29]Wen-Lei Zhao,Cai-Ying Ding, Jie Liu*,and Li-Bin Fu*,Directed momentum current of Bose–Einstein condensate in the presence of spatially modulated nonlinear interaction,J. Phys. B: At. Mol. Opt. Phys. 49,125303 (2016).

[30]Wen-Lei Zhao,Li-Bin Fu*, and Jie Liu*,Nonlinearity effects on the directed momentumcurrent,Phys. Rev. E 90, 022907 (2014).

[31] 赵文垒*,豆福全,王建忠,玻色-爱因斯坦凝聚体中非线性相互作用对量子共振棘流的影响,物理学报,61, 220503, (2012).

[32] 赵文垒*,王建忠,豆福全,混沌微扰导致的量子退相干,物理学报, 61,240302,(2012).

[33]Wen-Lei Zhao*,Quan-Lin Jie, and Bo Zhou,Quantum to Classical Transition by a Classically Small Interaction,Commun. Theor. Phys. (Beijing, China),54 247, (2010).

[34]Wen-Lei Zhao*and Quan-Lin Jie,Quantum to Classical Transition in a System of Two Coupled Kicked Rotors,Commun. Theor. Phys. (Beijing, China),51,465,(2009).

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