仪器科学与技术学科(按姓名拼音排序)

正高职称

雷雨昊

性       别:

聘用岗位/专技职务: 准聘教授

所在学科: 仪器科学与技术

研究方向: 超快激光微纳制造、多维光存储、超构光学元件

电子邮件: yuhaolei@bit.edu.cn

  • 个人简介

    【基本】雷雨昊,准聘教授,1993年11月出生于陕西省延安市,2023年博士毕业于英国南安普大学,2025年入选国家级青年人才,2026年3月加入pg娱乐电子游戏。长期在物理光学、微纳加工与测量等领域从事教学和科研工作,主要研究方向包括超快激光微纳制造、多维光存储和超构光学元件等方面。

    【科研】 获批国家自然科学基金国家级青年人才项目,发表SCI论文30余篇,作为第一/通讯作者(含共同)在Light Science & Applications, Science Advances, Optica, Laser & Photonics Reviews等SCI期刊发表论文10余篇。

    【任职】担任Light Science & Applications, Optica等十余种SCI期刊的审稿人。

  • 教育经历

    2011.9-2015.6,四川大学,光信息科学与技术,学士;

    2015.9-2018.6,南开大学,光学工程,硕士;

    2018.10-2023.9,英国南安普顿大学,光电子学,博士。
  • 工作经历

    2023.12-2026.12,香港中文大学,博士后研究员;

    2026.3-至今,pg娱乐电子游戏,教师。
  • 研究领域

    1. 超快激光微纳制造;

    2. 五维光存储;

    3. 超构光学元件
  • 代表性学术成果

    【期刊论文】
    As the Co-first†/Corresponding* author

    1. Z.-T. Liu†, Y.-H. Lei†, *, X.-H. Zhao, X. Zhang, H. Yuan, C.-Q. Jin, K.-M. Xu, Q.-D. Chen, X.-Q. Liu*, L. Wang*,High-efficiency generation and manipulation of optical vortex by geometric phase fork gratings with high thermal stability and damage threshold,Laser & Photonics Reviews, 2025, 0, e02265.

    2. M. Ye, Y. Lei*, X. Zhang, L. Wang, S. Chen*, Parallel writing of 5D optical data via shaped voxels, Science Advances, 2025, 11, eadx7335.

    3. Q. Wang†, Y.-H. Lei†, Y. Wang, Z. Liu, Y. Yu, X. Liu, B. Gao, K. Xu*, L. Wang*, High-capacity optical data storage by ultraviolet femtosecond laser writing in silica glass, Optics Express, 2024, 32(26), 46140.

    4. Y. Lei*, H. Wang, G. Shayeganrad, Y. Svirko, P. G. Kazansky*, Controlling ultrafast laser writing in silica glass by pulse temporal contrast
    Optics Letters, 2024, 49(9), 2385.

    5. Y. Lei*, G. Shayeganrad, H. Wang, M. Sakakura, Y. Yu, L. Wang, D. Kliukin, L. Skuja, Y. Svirko, P. G. Kazansky*, Efficient ultrafast laser writing with elliptical polarization, Light: Science & Applications, 2023, 12(1), 74.

    6. Y. Lei*, H. Wang, L. Skuja, B. Kühn, B. Franz, Y. Svirko, P. G. Kazansky*, Ultrafast laser writing in different types of silica glass, Laser & Photonics Reviews, 2023, 17, 2200978.

    7. Y. Lei*, H. Wang, G. Shayeganrad, P. G. Kazansky, Ultrafast laser nanostructuring in transparent materials for beam shaping and data storage – Invited, Optical Material Express, 2022, 12(9), 3327.

    8. Y. Lei*, M. Sakakura, L. Wang, Y. Yu, H. Wang, G. Shayeganrad, P. G. Kazansky, High speed ultrafast laser anisotropic nanostructuring by energy deposition control via near-field enhancement, Optica, 2021, 8 (11), 1365.

    9. Y. Lei, J. Yang*, C. Cong, C. Guo, Fabrication of homogenous subwavelength grating structures on metallic glass using double-pulsed femtosecond lasers, Optics and Lasers in Engineering, 2020, 134, 106273.

    10. Y. Lei, N. Zhang*, J. Yang*, C. Guo, Femtosecond laser eraser for controllable removing periodic microstructures on Fe-based metallic glass surfaces, Optics Express, 2018, 26(5), 5102.

    11. M. Sakakura*, Y. Lei, L. Wang*, Y. Yu, P. G. Kazansky, Ultralow-loss geometric phase and polarization shaping by ultrafast laser writing in silica glass, Light: Science & Applications, 2020, 9 (1), 15.

    12. M. Ye, Y. Lei, S. Gu, Y. Wang*, S. Chen*, Colloidal Silver Nanoparticles-assisted High-precision Parallel Laser Writing on Glass and Optical Crystals, Laser & Photonics Reviews, 2025, 19, e00047.

    13. H. Wang*, Y. Lei, G. Shayeganrad, Y. Svirko, P. G. Kazansky*, Increasing Efficiency of Ultrafast Laser Writing Via Nonlocality of Light‐Matter Interaction, Laser & Photonics Reviews, 2024, 18(8), 2301143.

    14. I. Zalesskaia*, Y. Lei, P. G. Kazansky, K. Wondraczek, R. Gumenyuk, V. Filippov, Double-clad ytterbium-doped tapered fiber with circular birefringence as a gain medium for structured light, Optics Letters, 2024, 49(2), 270.

    15. H. Wang*, Y. Lei, L. Wang, M. Sakakura, Y. Yu, G. Shayeganrad, P. G. Kazansky, 100‐Layer Error‐Free 5D Optical Data Storage by Ultrafast Laser Nanostructuring in Glass, Laser & Photonics Reviews, 2022, 16(4), 2100563.

    【专利】
    16. M. Sakakura, L. Wang, P. G. Kazansky, Y. Yu, Y. Lei, Method of forming birefringent structures in an optical element
    US Patent, 20220268983

  • 更新时间:2026年03月

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