Diffractive optical elements for the generating cylindrical beams of different orders

被引:9
|
作者
Degtyarev, S. A. [1 ,2 ]
Savelyev, D. A. [1 ,2 ]
Karpeev, S. V. [1 ,2 ]
机构
[1] Samara Natl Res Univ, Moskovskoye Shosse 34, Samara 443086, Russia
[2] RAS, Branch FSRC Crystallog & Photon, IPSI, Molodogvardeyskaya 151, Samara 443001, Russia
基金
俄罗斯基础研究基金会;
关键词
subwavelength structures; cylindrical beams; polarization conversion; finite element method; VECTOR BEAMS; PROPAGATION;
D O I
10.18287/2412-6179-2019-43-3-347-355
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
The paper proposes a method for calculating the phase function of subwavelength diffractive optical elements. The method is based on diffraction gratings with a varying period for generating vector beams with arbitrary-order cylindrical polarization. Formulas for the phase function of the grating are obtained with due regard for the period variation for increasing the efficiency of the polarization conversion of the incident beam. The obtained phase functions are supposed to be used for creating polarization-conversion diffractive optical elements for noise-resistant optical communication systems.
引用
收藏
页码:347 / 355
页数:9
相关论文
共 50 条
  • [21] Diffractive optical elements for shaping Gaussian Schell-model beams
    Kim, H
    Kim, T
    Choi, K
    Han, S
    Lee, IM
    Lee, B
    Holography, Diffractive Optics, and Applications II, Pts 1 and 2, 2005, 5636 : 431 - 439
  • [22] Cylindrical vector beams demultiplexing communication based on a vectorial diffractive optical element
    Cao, Mengwei
    Xie, Zhenwei
    Zhong, Yanan
    Lei, Ting
    Zhang, Wanlong
    Liu, Shutian
    Yuan, Xiaocong
    NANOPHOTONICS, 2023, 12 (09) : 1753 - 1762
  • [23] Design and Analysis of Diffractive Optical Elements for Flattening of Single Modal Gaussian Beams
    Yin, Kewei
    Huang, Zhiqiang
    Lin, Wumei
    Xing, Tingwen
    6TH INTERNATIONAL SYMPOSIUM ON ADVANCED OPTICAL MANUFACTURING AND TESTING TECHNOLOGIES: DESIGN, MANUFACTURING, AND TESTING OF SMART STRUCTURES, MICRO- AND NANO- OPTICAL DEVICES, AND SYSTEMS, 2012, 8418
  • [24] Diffractive optical elements designed by hybrid genetic algorithm for the generation of nondiffracting beams
    Zhou, GG
    Yuan, XC
    Dowd, P
    Lam, YL
    Chan, YC
    DIFFRACTIVE AND HOLOGRAPHIC TECHNOLOGIES FOR INTEGRATED PHOTONIC SYSTEMS, 2001, 4291 : 148 - 156
  • [25] DIFFRACTIVE OPTICAL ELEMENTS FOR THE FORMATION OF COMBINATIONS OF VORTEX BEAMS IN THE PROBLEM MANIPULATION OF MICROOBJECTS
    Skidanov, R. V.
    Ganchevskaya, S. V.
    COMPUTER OPTICS, 2014, 38 (01) : 65 - 71
  • [26] Designing diffractive optical elements for shaping partially coherent beams by proximity correction
    Dai, Shenyu
    Zheng, Xin
    Zhao, Shuai
    OPTICS EXPRESS, 2023, 31 (09) : 14464 - 14472
  • [27] Diffractive optical elements for optical identification
    Gandhi, Vishal
    Orava, Joni
    Tuovinen, Hemmo
    Saastamoinen, Toni
    Laukkanen, Janne
    Honkanen, Seppo
    Hauta-Kasari, Markku
    APPLIED OPTICS, 2015, 54 (07) : 1606 - 1611
  • [28] Broadband imaging with diffractive optical elements: MTF calculation must consider parasite orders contribution
    Houbre, F
    Cau, F
    Narcy, G
    Chavel, P
    DESIGN AND ENGINEERING OF OPTICAL SYSTEMS, 1996, 2774 : 164 - 170
  • [29] OBSERVATION AND THEORY OF SOME FOCAL PROPERTIES OF CROSSED CYLINDRICAL DIFFRACTIVE OPTICAL-ELEMENTS
    SMITH, RW
    WEST, AA
    APPLIED OPTICS, 1993, 32 (14): : 2490 - 2493
  • [30] Nonlinear diffractive optical elements
    Manela, Ofer
    Segev, Mordechai
    OPTICS EXPRESS, 2007, 15 (17): : 10863 - 10868