Optics and Precision Engineering, Volume. 33, Issue 8, 1169(2025)
Research on transmission and self-healing characteristics of high-order vector Bessel vortex beams
[1] 李岩珂, 刘圣, 李鹏. 无衍射贝塞尔光束的传输调控研究进展(特邀)[J]. 光学学报, 44, 1026001(2024).
LI Y K, LIU S, LI P et al. Progress in propagation control of non-diffracting Bessel beams(invited)[J]. Acta Optica Sinica, 44, 1026001(2024).
[2] BOUCHAL Z, WAGNER J, CHLUP M. Self-reconstruction of a distorted nondiffracting beam[J]. Optics Communications, 151, 207-211(1998).
[3] ALLEN L, BEIJERSBERGEN M W, SPREEUW R J et al. Orbital angular momentum of light and the transformation of Laguerre-Gaussian laser modes[J]. Physical Review A, Atomic, Molecular, and Optical Physics, 45, 8185-8189(1992).
[4] 樊鑫豪, 武炫光, 周亮. 基于超表面的阵列光场纵向维度信息编解码[J]. 中国激光, 50, 1813013(2023).
FAN X H, WU X G, ZHOU L et al. Longitudinally encoding and decoding information in light field arrays based on metasurface[J]. Chinese Journal of Lasers, 50, 1813013(2023).
[5] XIE J J, TANG S Y, CHEN Y Q et al. Self-reconstruction characteristics of Bessel beam in biological tissue[J]. Chinese Journal of Lasers, 49(2022).
谢家俊, 唐诗瑶, 陈永强. 贝塞尔光束在生物组织中的自重建特性研究[J]. 中国激光, 49(2022).
[6] FENG Q, LIN Y F, SHAN M M et al. Generation and measurement of a Bessel vortex beam carrying multiple orbital-angular-momentum modes through a reflective metasurface in the rf domain[J]. Physical Review Applied, 15(2021).
[7] AHMED N, ZHAO Z, LI L et al. Mode-division-multiplexing of multiple Bessel-Gaussian beams carrying orbital-angular-momentum for obstruction-tolerant free-space optical and millimetre-wave communication links[J]. Scientific Reports, 6, 22082(2016).
[8] CHEN S, LI S H, ZHAO Y F et al. Demonstration of 20-Gbit/s high-speed Bessel beam encoding/decoding link with adaptive turbulence compensation[J]. Optics Letters, 41, 4680-4683(2016).
[9] LI S H, WANG J. Adaptive free-space optical communications through turbulence using self-healing Bessel beams[J]. Scientific Reports, 7, 43233(2017).
[10] GARCÉS-CHÁVEZ V, MCGLOIN D, MELVILLE H et al. Simultaneous micromanipulation in multiple planes using a self-reconstructing light beam[J]. Nature, 419, 145-147(2002).
[11] MAZILU M, STEVENSON D J, GUNN-MOORE F et al. Light beats the spread: “non-diffracting” beams[J]. Laser & Photonics Reviews, 4, 529-547(2010).
[12] ZHANG P, PRAKASH J, ZHANG Z et al. Trapping and guiding microparticles with morphing autofocusing Airy beams[J]. Optics Letters, 36, 2883-2885(2011).
[13] CLERICI M, HU Y, LASSONDE P et al. Laser-assisted guiding of electric discharges around objects[J]. Science Advances, 1(2015).
[14] WENG X Y, SONG Q, LI X M et al. Free-space creation of ultralong anti-diffracting beam with multiple energy oscillations adjusted using optical pen[J]. Nature Communications, 9, 5035(2018).
[15] MIAO Y, WENG X Y, WANG Y H et al. Parallel creation of propagable integer- and fractional-order vector vortex beams using mode extraction principle[J]. Optics Letters, 47, 3319-3322(2022).
[16] WANG L Y, SUN X J, WANG G X et al. Creation of vector Bessel beams with arbitrary polarization modes using mode extraction principle[J]. Optica Applicata, 53, 575-589.
[17] ARNOLD C L, AKTURK S, MYSYROWICZ A et al. Nonlinear Bessel vortex beams for applications[J]. Journal of Physics B Atomic Molecular Physics, 48(2015).
[18] BELYI V N. Propagation of high-order circularly polarized Bessel beams and vortex generation in uniaxial crystals[J]. Optical Engineering, 50(2011).
[19] 胡梦宁, 葛励成, 张晋平. 多脉冲飞秒激光深小孔的加工[J]. 中国激光, 43, 403006(2016).
HU M N, GE L C, ZHANG J P et al. Hole-drilling with high depth-diameter ratio using multi-pulse femtosecond laser[J]. Chinese Journal of Lasers, 43, 403006(2016).
[20] 宋博文, 李家文. 中空双螺旋微机器人的飞秒激光动态全息高效加工[J]. 光学 精密工程, 29, 2101-2107(2021).
SONG B W, LI J W. Rapid fabrication of hollow double helix microrobot using femtosecond laser dynamic holograpic method[J]. Opt. Precision Eng., 29, 2101-2107(2021).
[21] 李瑞健, 任元, 刘通. 基于纯相位空间光调制器和棋盘相格法制备高阶贝塞尔涡旋光束[J]. 光学学报, 42, 1005001(2022).
LI R J, REN Y, LIU T et al. Generation of high-order Bessel beam vortex based on phase-only spatial light modulator and checkerboard phase lattice method[J]. Acta Optica Sinica, 42, 1005001(2022).
[22] LIU X Q, XUE C X. Design of diffractive optical elements based on axicon and its light analysis[J]. Laser & Optoelectronics Progress, 55(2018).
刘晓庆, 薛常喜. 基于轴棱锥的衍射光学元件设计及其光场分析[J]. 激光与光电子学进展, 55(2018).
[23] MIAO Y, WENG X Y, XU M Z et al. Dynamic control of multi-channel plasmonic vector vortex with integer- and fractional-order based on mode extraction[J]. Optics & Laser Technology, 164, 109471(2023).
[24] RICHARDS B, WOLF E. Electromagnetic diffraction in optical systems, II. Structure of the image field in an aplanatic system[J]. Proceedings of the Royal Society of London Series A Mathematical and Physical Sciences, 253, 358-379(1959).
[25] WENG X Y, MIAO Y, ZHANG Q L et al. Extraction of inherent polarization mode from one single light beam[J]. Advanced Photonics Research, 3, 1-7(2021).
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Xujian WANG, Chenjun HAO, Haoxiang LI, Ke ZHU, Xiumin GAO, Songlin ZHUANG. Research on transmission and self-healing characteristics of high-order vector Bessel vortex beams[J]. Optics and Precision Engineering, 2025, 33(8): 1169
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Received: Feb. 12, 2025
Accepted: --
Published Online: Jul. 1, 2025
The Author Email: Ke ZHU (zhuke12@126.com)