Design of diffractive beam-shaping elements for non-uniform illumination waves

被引:5
|
作者
Hermerschmidt, A [1 ]
Eichler, HJ [1 ]
Teiwes, S [1 ]
Schwartz, J [1 ]
机构
[1] Tech Univ Berlin, Opt Inst P11, D-10623 Berlin, Germany
来源
DIFFRACTIVE AND HOLOGRAPHIC DEVICE TECHNOLOGIES AND APPLICATIONS V | 1998年 / 3291卷
关键词
diffractive optics; lasers; beam shaping; finite-element-mesh method;
D O I
10.1117/12.310592
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
A method for the design of diffractive beam-shaping elements is presented which extends the finite-element-meshes (FEM) method proposed by Dresel et al. [1]. In particular, the modified method can be applied to non-uniform intensity distributions in the input and output planes. This extension is of practical significance due to the nonuniformity of real laser beam intensity distributions. The method is shown to result in so-called smooth phase functions which are desired for beam-shaping applications to overcome the well-known speckle problem. Transmission functions of diffractive phase-only elements have been computed solving beam-shaping problems of practical relevance. We have demonstrated by numerical simulation experiments that the computed elements perform the desired beam-shaping operations in good approximation.
引用
收藏
页码:40 / 48
页数:9
相关论文
共 40 条
  • [31] Uniformity of reshaped beam by diffractive optical elements with light-emitted diode illumination
    Chen, Mengzhu
    Gu, Huarong
    Wang, Qixia
    Tan, Qiaofeng
    AOPC 2015: MICRO/NANO OPTICAL MANUFACTURING TECHNOLOGIES; AND LASER PROCESSING AND RAPID PROTOTYPING TECHNIQUES, 2015, 9673
  • [32] Novel continuously shaped diffractive optical elements enable high efficiency beam shaping
    Miklyaev, Yuri V.
    Imgrunt, Waleri
    Pavelyev, Vladimir S.
    Kachalov, Denis G.
    Bizjak, Tanja
    Aschke, Lutz
    Lissotschenko, Vitalij N.
    OPTICAL MICROLITHOGRAPHY XXIII, 2010, 7640
  • [33] Design of computer-generated beam-shaping holograms by iterative finite-element mesh adaption
    Dresel, T
    Beyerlein, M
    Schwider, J
    APPLIED OPTICS, 1996, 35 (35): : 6865 - 6874
  • [34] Fuzzy control iterative algorithm for the design of diffractive optical elements for laser beam shaping - art. no. 68322C
    Yong, Lin
    Hu Jiasheng
    Wu Xu
    Wu Kenan
    HOLOGRAPHY AND DIFFRACTIVE OPTICS III, 2008, 6832 : C8322 - C8322
  • [35] Precise Design of Diffraction Optical Elements Based on Annular Beam Shaping
    Yang Meixia
    Kong Zhe
    Tan Qiaofeng
    Ren Gang
    Xue Liangping
    ACTA OPTICA SINICA, 2019, 39 (03)
  • [36] Broadband Beam Shaping Using Two Cascaded Diffractive Optical Elements with Different Sizes of Effective Phase Region
    Ding, Li
    Cao, Guowei
    Guo, Jin
    Wang, Jun
    Huang, Kun
    Li, Yongping
    Kang, Xueliang
    Wang, Liang
    AOPC 2017: OPTOELECTRONICS AND MICRO/NANO-OPTICS, 2017, 10460
  • [37] Design of diffractive beam shaper for transforming a Gaussian beam to a squared uniform beam - art. no. 68320U
    Hsu, Ku-Hui
    Lin, Hoang Yan
    HOLOGRAPHY AND DIFFRACTIVE OPTICS III, 2008, 6832 : U8320 - U8320
  • [38] A fireworks algorithm based Gerchberg-Saxton algorithm for the design of diffractive optical element for beam shaping
    Niu, Bowen
    Dai, Xingang
    Hu, Yanjun
    Zhang, Hongru
    Jing, Gaoshan
    Zhang, Zhiping
    Fan, Guofang
    OPTICS COMMUNICATIONS, 2024, 557
  • [39] Design and simulated performance of transmissive phase elements for intra-cavity beam shaping
    Liu, JS
    Taghizadeh, MR
    JOURNAL OF OPTICS A-PURE AND APPLIED OPTICS, 2003, 5 (03): : 216 - 220
  • [40] Advanced concepts for UV laser beam shaping with non-rotationary symmetric optical elements
    Unnebrink, L
    Henning, T
    Scholl, M
    Kreutz, EW
    LASERS IN MATERIAL PROCESSING, 1997, 3097 : 328 - 334