Structured caustic vector vortex optical field: manipulating optical angular momentum flux and polarization rotation

被引:0
|
作者
Rui-Pin Chen
Zhaozhong Chen
Khian-Hooi Chew
Pei-Gang Li
Zhongliang Yu
Jianping Ding
Sailing He
机构
[1] Zhejiang Sci-Tech University,Department of Physics
[2] National Laboratory of Solid State Microstructures and School of Physics,Department of Physics
[3] Nanjing University,undefined
[4] Faculty of Science,undefined
[5] University of Malaya,undefined
[6] Centre for Optical and Electromagnetic Research,undefined
[7] Zhejiang University,undefined
[8] Joint Research Center of Photonics of the Royal Institute of Technology,undefined
[9] Zhejiang University,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
A caustic vector vortex optical field is experimentally generated and demonstrated by a caustic-based approach. The desired caustic with arbitrary acceleration trajectories, as well as the structured states of polarization (SoP) and vortex orders located in different positions in the field cross-section, is generated by imposing the corresponding spatial phase function in a vector vortex optical field. Our study reveals that different spin and orbital angular momentum flux distributions (including opposite directions) in different positions in the cross-section of a caustic vector vortex optical field can be dynamically managed during propagation by intentionally choosing the initial polarization and vortex topological charges, as a result of the modulation of the caustic phase. We find that the SoP in the field cross-section rotates during propagation due to the existence of the vortex. The unique structured feature of the caustic vector vortex optical field opens the possibility of multi-manipulation of optical angular momentum fluxes and SoP, leading to more complex manipulation of the optical field scenarios. Thus this approach further expands the functionality of an optical system.
引用
收藏
相关论文
共 50 条
  • [31] Optical spin-to-orbital angular momentum conversion in structured optical fields
    赵阳
    阳成熙
    朱家玺
    林峰
    方哲宇
    朱星
    Chinese Physics B, 2020, 29 (06) : 511 - 515
  • [32] The additional optical angular momentum flux in media with nonlocality of nonlinear optical response
    Ryzhikov, P. S.
    Makarov, V. A.
    LASER PHYSICS LETTERS, 2022, 19 (11)
  • [33] Manipulating atomic states via optical orbital angular-momentum
    Liu, Xiong-jun
    Liu, Xin
    Kwek, Leong-Chuan
    Oh, Choo Hiap
    FRONTIERS OF PHYSICS IN CHINA, 2008, 3 (02): : 113 - 125
  • [34] Manipulating atomic states via optical orbital angular-momentum
    Xiong-jun Liu
    Xin Liu
    Leong-Chuan Kwek
    Choo Hiap Oh
    Frontiers of Physics in China, 2008, 3 : 113 - 125
  • [35] Polarization Evolution of a Vector Vortex Optical Field in a Strongly Nonlocal Nonlinear Medium
    Liu, Caixia
    Zhu, Huiwen
    Chen, Rui-Pin
    Dai, Chao-Ding
    He, Sailing
    IEEE PHOTONICS JOURNAL, 2019, 11 (02):
  • [36] Grafted optical vortex with controllable orbital angular momentum distribution
    Zhang, Hao
    Li, Xinzhong
    Ma, Haixiang
    Tang, Miaomiao
    Li, Hehe
    Tang, Jie
    Cai, Yangjian
    OPTICS EXPRESS, 2019, 27 (16) : 22930 - 22938
  • [37] Optical vortex fields with an arbitrary orbital angular momentum orientation
    Meng, Xindong
    Hu, Yaodan
    Wan, Chenhao
    Zhan, Qiwen
    OPTICS LETTERS, 2022, 47 (17) : 4568 - 4571
  • [38] Radial dependence of the angular momentum density of a paraxial optical vortex
    Kotlyar, V. V.
    Kovalev, A. A.
    Porfirev, A. P.
    PHYSICAL REVIEW A, 2018, 97 (05)
  • [39] Optical vortex parametric laser with a versatile orbital angular momentum
    Araki, Shungo
    Mamuti, Roukuya
    Suzuki, Kensuke
    Nishida, Shigeki
    Miyamoto, Katsuhiko
    Omatsu, Takashige
    2018 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2018,
  • [40] Detection of the orbital angular momentum of fractional optical vortex beams
    Department of Optoelectronic Engineering, Huaqiao University, Quanzhou 362021, China
    Guangdianzi Jiguang, 2009, 11 (1478-1482):