王春芳照片

王春芳教授物理学院硕士生导师;博士生导师

研究方向:量子传感及精密测量;非线性光学;计算光学成像

办公室:卓越楼 806 室 邮箱:wcf1189@163.com 更新时间:2026-06-01

Wang ChunfangProfessorSchool of PhysicsMaster's Supervisor; Doctoral Supervisor

Research: computational physics

Office: Room 806, Zhuoyue Building | Email: wcf1189@163.com | Last updated: 2026-06-01

教育背景与工作经历

教育背景

  • 2006.03-2009.07 中国科学院上海光学精密机械研究所 博士
  • 1998.09-2005.07 江西师范大学物理系 本科及硕士(推免)

工作经历

  • 2019.10-2020.07 University of Glasgow 物理与天文学院 访问学者
  • 2009.07-至今 上海理工大学 讲师、副教授、教授
  • 2005.07-2009.03 华东交通大学 讲师

科研项目

  • 国家自然科学基金面上项目, 62575181 ,基于量子点分子系统的高精度三维磁场传感机制研究, 2026/01-2029/12 , 49 万元,在研,主持。
  • GF 科技创新项目, ******************** 导电薄膜, 2022/10-2024/10 , 180 万元,已结题,项目负责人; 国家重点研发计划, 2018YFF0109603
  • 基于国产 EMCCD 的仪器研发及应用, 2018 /09- 2022 /08, 150 万元,已结题,课题负责人。
  • 国家自然科学基金青年项目, 11104185 ,稀土离子硅酸钇晶体中的电磁诱导成像研究, 2012/01-2014/12 , 25 万元,已结题,主持。
  • 上海市教委创新基金, 11YZ118 ,相干固态介质中负折射率材料研究, 10 万元,已结题,主持。

代表性论著

  • 1. Akhtar Munir, Wang ChunFang. Coherent- and dissipative-coupling control of photonic spin hall effect in cavity magnomechanical system. OPTICS AND LASER TECHNOLOGY, 2025, 188(112813): 1-9.
  • 2. Akhtar Munir, Wang ChunFang. Enhanced photonic spin Hall effect in atomic-ensemble-based cavity optomechanics. PHYSICAL REVIEW A, 2025, 111(05): 1-11.(新闻链接
  • 3. Akhtar Munir, Wang ChunFang. Graphene-based optomechanically induced transparency for resonant excitation of a surface plasmon polariton. PHYSICAL REVIEW A, 2025, 110(06): 1-12.
  • 4. Akhtar Munir, Wang ChunFang. Photonic spin Hall effect induced by collective strong coupling of molecular ensembles in a plasmonic nanocavity. PHYSICAL REVIEW A, 2025, 112(02): 3517-1-13.
  • 5. Yuan ChenYu, Wang ChunFang. High-Quality Single-Pixel Imaging Based on Large-Kernel Convolution under Low-Sampling Conditions. CHINESE PHYSICS LETTERS, 2025, 42(4): 044201-1-7.
  • 6. Akhtar Munir, Wang ChunFang. Nonreciprocal cavity magnonicssystem for amplification of photonic spin Hall effect. CHAOS SOLITONS & FRACTALS, 2025, 192(116019): 1-9.
  • 7. Zhang QiXin, Wang ChunFang. Reconfiguring the propagation dynamics of Airy beams through quantum coherence. PHYSICS LETTERS A, 2025, 533(130218): 1-9.
  • 8. Qu XiaoHan, Wang ChunFang. The four-wave mixing (FWM) in a five-level atomic system driven by magnetic field. European Physical Journal Plus, 2025, 140(2): 1-10.
  • 9. Akhtar Munir, Wang ChunFang. Dissipation-driven optomechanical control of diffraction grating through collective molecular interactions. CHAOS SOLITONS & FRACTALS, 2025, 203(Part B): 117646.
  • 10. Yang ZhenMing, Wang ChunFang. Enhancing dynamic target reconstruction and tracking based on ghost imaging and deep convolutional neural networks. OPTICS COMMUNICATIONS, 2024, 574(10): 131224.
  • 11. Akhtar Munir, Wang ChunFang. Control resonant excitation of surface plasmon polariton in quantum-dot molecule system via tunneling induced transparency and Autler–Townes splitting. Optics & Laser Technology, 2024, 181(10): 111891.
  • 12. Guan RangKe, Wang ChunFang. Polarization responses of generated vector beam in a magnetic-driven atomic system. PHYSICS LETTERS A, 2023, 481(128974): 1-10.
  • 13. Chen Xu. An efficient neural network for low sampling computational ghost imaging based on EMNIST training. JOURNAL OF MODERN OPTICS, 2022, 10(1): 1-7.
  • 14. Wang ChunFang. Localizationof the light in two-dimensional PT-symmetric optical lattice. PHYSICS LETTERS A, 2022, 430(127963): 127963.
  • 15. Li ZhenZhu, Wang ChunFang. Transfer and evolution of structured polarization in a double-V atomic system. optics express, 2022, 30(11): 19823.
  • 16. Wang ChunFang. Exploration and thinking on ideological and political teaching in the "Mechanics" course. 2022, 44(1): 92.
  • 17. Zhao QuanChao, Wang ChunFang. Research status and development of low-sampling correlation imaging. Optical Instruments, 2022, 44(4): 87-94.
  • 18. Wang ChunFang. Ghost imaging of blurred object based on deep-learning. APPLIED OPTICS, 2021, 60(13): 3732~3739.
  • 19. Wang ChunFang. The transition of lateral spreading to localization in 3D disordered medium. PHYSICS LETTERS A, 2021, 400(127321): 1-5.

主讲课程

  • 力学B;光学原理

Education & Work Experience

Education

  • 2006.03-2009.07, Ph.D., Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences.
  • 1998.09-2005.07, B.Sc. and M.Sc. in Physics, Jiangxi Normal University.

Work Experience

  • 2019.10-2020.07, Visiting Scholar, School of Physics and Astronomy, University of Glasgow.
  • 2009.07-present, Lecturer, Associate Professor, and Professor, University of Shanghai for Science and Technology.
  • 2005.07-2009.03, Lecturer, East China Jiaotong University.

Research Projects

  • Projects: NSFC General Program (62575181), "Mechanism Study of High-Precision 3D Magnetic-Field Sensing Based on Quantum-Dot Molecular Systems," 2026/01-2029/12, RMB 490,000, ongoing, PI. GF Science and Technology Innovation Project, ******************** conductive films, 2022/10-2024/10, RMB 1,800,000, completed, Project Leader. National Key R&D Program (2018YFF0109603), "Instrument Development and Applications Based on Domestic EMCCD," 2018/09-2022/08, RMB 1,500,000, completed, Task Leader. NSFC Young Scientists Fund (11104185), "Electromagnetically Induced Imaging in Rare-Earth-Ion Yttrium Silicate Crystals," 2012/01-2014/12, RMB 250,000, completed, PI. Shanghai Municipal Education Commission Innovation Fund (11YZ118), "Negative-Index Materials in Coherent Solid-State Media," RMB 100,000, completed, PI. School-level General Affairs.

Selected Publications

  • 1. Akhtar Munir, Wang ChunFang. Coherent- and dissipative-coupling control of photonic spin hall effect in cavity magnomechanical system. OPTICS AND LASER TECHNOLOGY, 2025, 188(112813): 1-9.
  • 2. Akhtar Munir, Wang ChunFang. Enhanced photonic spin Hall effect in atomic-ensemble-based cavity optomechanics. PHYSICAL REVIEW A, 2025, 111(05): 1-11. (News: News)
  • 3. Akhtar Munir, Wang ChunFang. Graphene-based optomechanically induced transparency for resonant excitation of a surface plasmon polariton. PHYSICAL REVIEW A, 2025, 110(06): 1-12.
  • 4. Akhtar Munir, Wang ChunFang. Photonic spin Hall effect induced by collective strong coupling of molecular ensembles in a plasmonic nanocavity. PHYSICAL REVIEW A, 2025, 112(02): 3517-1-13.
  • 5. Yuan ChenYu, Wang ChunFang. High-Quality Single-Pixel Imaging Based on Large-Kernel Convolution under Low-Sampling Conditions. CHINESE PHYSICS LETTERS, 2025, 42(4): 044201-1-7.
  • 6. Akhtar Munir, Wang ChunFang. Nonreciprocal cavity magnonicssystem for amplification of photonic spin Hall effect. CHAOS SOLITONS & FRACTALS, 2025, 192(116019): 1-9.
  • 7. Zhang QiXin, Wang ChunFang. Reconfiguring the propagation dynamics of Airy beams through quantum coherence. PHYSICS LETTERS A, 2025, 533(130218): 1-9.
  • 8. Qu XiaoHan, Wang ChunFang. The four-wave mixing (FWM) in a five-level atomic system driven by magnetic field. European Physical Journal Plus, 2025, 140(2): 1-10.
  • 9. Akhtar Munir, Wang ChunFang. Dissipation-driven optomechanical control of diffraction grating through collective molecular interactions. CHAOS SOLITONS & FRACTALS, 2025, 203(Part B): 117646.
  • 10. Yang ZhenMing, Wang ChunFang. Enhancing dynamic target reconstruction and tracking based on ghost imaging and deep convolutional neural networks. OPTICS COMMUNICATIONS, 2024, 574(10): 131224.
  • 11. Akhtar Munir, Wang ChunFang. Control resonant excitation of surface plasmon polariton in quantum-dot molecule system via tunneling induced transparency and Autler–Townes splitting. Optics & Laser Technology, 2024, 181(10): 111891.
  • 12. Guan RangKe, Wang ChunFang. Polarization responses of generated vector beam in a magnetic-driven atomic system. PHYSICS LETTERS A, 2023, 481(128974): 1-10.
  • 13. Chen Xu. An efficient neural network for low sampling computational ghost imaging based on EMNIST training. JOURNAL OF MODERN OPTICS, 2022, 10(1): 1-7.
  • 14. Wang ChunFang. Localizationof the light in two-dimensional PT-symmetric optical lattice. PHYSICS LETTERS A, 2022, 430(127963): 127963.
  • 15. Li ZhenZhu, Wang ChunFang. Transfer and evolution of structured polarization in a double-V atomic system. optics express, 2022, 30(11): 19823.
  • 16. Wang ChunFang. Exploration and thinking on ideological and political teaching in the "Mechanics" course. 2022, 44(1): 92.
  • 17. Zhao QuanChao, Wang ChunFang. Research status and development of low-sampling correlation imaging. Optical Instruments, 2022, 44(4): 87-94.
  • 18. Wang ChunFang. Ghost imaging of blurred object based on deep-learning. APPLIED OPTICS, 2021, 60(13): 3732~3739.
  • 19. Wang ChunFang. The transition of lateral spreading to localization in 3D disordered medium. PHYSICS LETTERS A, 2021, 400(127321): 1-5.

Courses

  • Mechanics B; Principles of Optics