Analytic approach for optimal quantization of diffractive optical elements

被引:11
|
作者
Levy, U [1 ]
Cohen, N [1 ]
Mendlovic, D [1 ]
机构
[1] Tel Aviv Univ, Fac Engn, IL-69978 Tel Aviv, Israel
关键词
D O I
10.1364/AO.38.005527
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
One of the most important factors that Limit the performance of diffractive optical elements (DOE's) is the depth accuracy of the relief structure. A common procedure for fabricating DOE's is the binary optics procedure, in which binary masks are used for the fabrication of a multilevel relief structure. Here an analytic procedure for calculating the optimal depth levels of DOE's, the phase bias, and the decision levels is presented. This approach is based on the minimization of the mean-squared error caused by the quantization of the continuous profile. As a result of the minimization an optimal value for the etching depth of each photolithographic mask is determined. The obtained depth values are, in general, different from the depth values used by the conventional multilevel approach. Comprehensive mathematical analysis is given, followed by several computer simulations that demonstrate the advantages of the proposed procedure. (C) 1999 Optical Society of America.
引用
收藏
页码:5527 / 5532
页数:6
相关论文
共 50 条
  • [41] A design of greyscale diffractive optical elements
    Wang, Cheng-Te
    Lu, Yi-Bin
    Chung Cheng Ling Hsueh Pao/Journal of Chung Cheng Institute of Technology, 2002, 30 (02): : 27 - 35
  • [42] Rigorous synthesis of diffractive optical elements
    Noponen, E
    Saarinen, J
    DIFFRACTIVE AND HOLOGRAPHIC OPTICS TECHNOLOGY III, 1996, 2689 : 54 - 65
  • [43] Scatterometer for characterization of diffractive optical elements
    Husu, H.
    Saastamoinen, T.
    Laukkanen, J.
    Siitonen, S.
    Turunen, J.
    Lassila, A.
    MEASUREMENT SCIENCE AND TECHNOLOGY, 2014, 25 (04)
  • [44] Diffractive elements for imaging optical systems
    Antonov A.I.
    Greisukh G.I.
    Ezhov E.G.
    Stepanov S.A.
    Optoelectronics, Instrumentation and Data Processing, 2017, 53 (5) : 421 - 430
  • [45] Replication techniques for diffractive optical elements
    Gale, MT
    MICROELECTRONIC ENGINEERING, 1997, 34 (3-4) : 321 - 339
  • [46] Advantages in THz diffractive optical elements
    Minin, IV
    Minin, OV
    CONFERENCE DIGEST OF THE 2004 JOINT 29TH INTERNATIONAL CONFERENCE ON INFRARED AND MILLIMETER WAVES AND 12TH INTERNATIONAL CONFERENCE ON TERAHERTZ ELECTRONICS, 2004, : 371 - 372
  • [47] Diffractive optical elements for biomedical applications
    Golub, M
    Grossinger, I
    BIOMEDICAL SYSTEMS AND TECHNOLOGIES II, PROCEEDINGS OF, 1998, 3199 : 220 - 231
  • [48] Wave modelling of diffractive optical elements
    Kovatchev, M
    Ilieva, R
    JOURNAL OF MODERN OPTICS, 1996, 43 (07) : 1399 - 1408
  • [49] Multilayer technology for diffractive optical elements
    Goebel, B
    Wang, LL
    Tschudi, T
    APPLIED OPTICS, 1996, 35 (22): : 4490 - 4493
  • [50] Design and fabrication of diffractive optical elements
    Kusko, M
    Cojoc, D
    Apostol, D
    Muller, R
    Manea, E
    Podaru, C
    2003 INTERNATIONAL SEMICONDUCTOR CONFERENCE, VOLS 1 AND 2, PROCEEDINGS, 2003, : 167 - 170