大气与环境光学学报, 2019, 14 (6): 401, 网络出版: 2019-12-05  

离轴高阶贝塞尔-高斯涡旋光束的传输分析

Transmission Analysis of Off-Axis High Order Bessel-Gaussian Vortex Beam
作者单位
1 山东大学信息科学与工程学院, 山东 济南 250100
2 山东航天电子技术研究所, 山东 烟台 264670
3 山东大学控制科学与工程学院, 山东 济南 250061
4 山东大学苏州研究院, 江苏 苏州 215123
摘要
研究高斯光束经螺旋相位板和轴棱锥产生高阶贝塞尔-高斯涡旋光束的离轴传输情况,对于离轴高阶贝塞尔-高斯光束的成因、 光强分布操控、光斑定位等实际应用具有一定的理论指导意义。利用菲涅尔衍射积分的卷积算法(Triple fast Fourier transform, T-FFT)对离轴高阶贝塞尔-高斯涡旋光束进行仿真分析,着重研究了螺旋相位板和轴棱锥的错位参数、拓扑荷数 以及传输距离等参数对光束带来的影响。分析表明:离轴高阶贝塞尔-高斯光束具有不均匀的光强分布,由于轴棱锥的偏移, 光束会整体发生偏移,传输不同距离光强不均匀分布情况不同,不同的拓扑荷数只影响光斑的扩展,螺旋相位板和轴棱锥离 轴参量值的多种组合会导致多种不同的光强分布情况,甚至出现暗核偏移。
Abstract
The off-axis transmission of high order Bessel-Gaussian vortex beam produced by spiral phase plate (SPP) and axicon is studied, which can provide reference for the off-axis high order Bessel-Gaussian beams’ formation, intensity distribution control, spot location and other practical applications. On the basis of the theory of diffraction, the transmission of the higher order off-axis Bessel-Gaussian beams is simulated and analyzed by using the triple fast Fourier transform (T-FFT) algorithm. The effects of dislocation parameters, topological charge numbers and transmission distances of SPP and the axicon on the beams are considered during the simulation. The analysis shows that the off-axis higher-order Bessel-Gaussian beams have an uneven light intensity distribution. Due to the shift of the axicon, the beams will be shifted as a whole and the uneven distribution of light intensity at different distances is different. Different topological charge only affects the light spot expansion. Various combinations of the off-axis parametric values for SPP and the axicon will generate different light intensity distributions and even dark core’s shifts.
参考文献

[1] Mazilu M, Stevenson D J, Gums-Moore F, et al. Light beats the spread: “non-diffracting” beams[J]. Laser Photonics Reviews, 2010, 4(4): 529-574.

[2] Paterson L, Macdonald M P,Arlt J, et al. Controlled rotation of optically trapped microscopic particle[J]. Science, 2001, 292: 912-914.

[3] Agarwal R, Ladavac K, Roichman Y, et al. Manipulation and assembly of nanowires with holographic optical traps[J]. Optics Express, 2005, 13(22):8906-8912.

[4] Ng J, Lin Z, Chan C T. Theory of optical trapping by an optical vortex beam[J]. Physical Review Letters, 2010, 104(10): 103601.

[5] Arlt J, Dholakia K. Generation of high-order Bessel beams by use of an axicon[J]. Optics Communications, 2000, 177(1): 297-301.

[6] Turunen J, Vasara A, Friberg A T. Holographic generation of diffraction-free beams[J]. Applied Optics, 1988, 27(19): 3959-3962.

[7] 陈光明, 林惠川, 蒲继雄. 轴棱锥聚焦涡旋光束获得高阶贝塞尔光束[J]. 光电子·激光, 2011(6): 945-950.

    Chen Guangming, Lin Huichuan, Pu Jixiong. Axial pyramid focusing vortex beam to obtain high-order Bessel beam[J]. Photoelectron·laser, 2011(6): 945-950(in Chinese).

[8] 丁攀峰, 蒲继雄. 离轴拉盖尔-高斯涡旋光束传输中的光斑演变[J]. 物理学报, 2012, 61(6): 198-203.

    Ding Panfeng, Pu Jixiong. Spot evolution in off-axis Laguerre-Gaussian vortex beam propagation[J]. Journal of Physics, 2012, 61(6):198-203(in Chinese).

[9] Liu P S, Lü B D. Propagation of Gaussian background vortex beams diffracted at a half-plane screen[J]. Optics & Laser Technology, 2008, 40(2): 227-234.

[10] 张明明. 离轴涡旋光束的传输特性研究[D]. 南京:南京理工大学硕士论文, 2014.

    Zhang Mingming. Study on Transmission Characteristics of Off-axis Vortex Beams[D]. Nanjing: Master Thesis of Nanjing University of Science & Technology, 2014(in Chinese).

[11] 胡 润, 吴逢铁, 朱清智,等. 离轴像散对高阶贝塞尔光束的影响[J]. 光学学报, 2017, 37(8):294-301.

    Hu Run, WuFengtie, Zhu Qingzhi, et al. Influence of off-axis astigmatism on high-order Bessel beams[J]. Journal of Optics, 2017, 37(8): 294-301(in Chinese).

[12] Chen Jun,Kuang Dengfeng, Gui Min, et al. Generation of optical vortex using a spiral phase plate fabricated in quartz by direct laser writing and inductively coupled plasma etching[J]. Chinese Physics Letters, 2009, 26(1): 102-104.

[13] Pérez, M.V., C. Gómez-Reino and J.M. Cuadrado, Diffraction Patterns and Zone Plates Produced by Thin Linear Axicons. Optica Acta: International Journal of Optics, 1986. 33(9): 1161-1176.

[14] 刘普生. 相干和相关奇点光学效应研究[D]. 成都:四川大学博士论文, 2007.

    Liu Pusheng. Study on optical effects of coherent and related singularities[D]. Chengdu: Doctorial Dissertation of Sichuan University, 2007(in Chinese).

[15] 钱晓凡. 信息光学数字实验室:MATLAB版[M]. 北京:科学出版社, 2015.

    Qian Xiaofan. Information optical digital laboratory: MATLAB edition[M]. Beijing: Science Press,2015(in Chinese).

刘慎哲, 宋镇江, 黄秀军, 石德乐, 姜明顺, 隋青美, 冯德军. 离轴高阶贝塞尔-高斯涡旋光束的传输分析[J]. 大气与环境光学学报, 2019, 14(6): 401. LIU Shenzhe, SONG Zhenjiang, HUANG Xiujun, SHI Dele, JIANG Mingshun, SUIQingmei, FENG Dejun. Transmission Analysis of Off-Axis High Order Bessel-Gaussian Vortex Beam[J]. Journal of Atmospheric and Environmental Optics, 2019, 14(6): 401.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!