Genetic algorithm for the design of high frequency diffraction gratings for high power laser applications

被引:0
|
作者
Thomson, Martin J. [1 ]
Waddie, Andrew J. [1 ]
Taghizadeh, Mohammad R. [1 ]
机构
[1] Heriot Watt Univ, Sch Engn & Phys Sci, Edinburgh EH14 4AS, Midlothian, Scotland
关键词
diffraction gratings; lasers; rigorous domain; high-power;
D O I
10.1117/12.661744
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We present a genetic algorithm with small population sizes for the design of diffraction gratings in the rigorous domain. A general crossover and mutation scheme is defined, forming fifteen offspring from 3 parents, which enables the algorithm to be used for designing gratings with diverse optical properties by careful definition of the merit function. The initial parents are randomly selected and the parents of the subsequent generations are selected by survival of the fittest. The performance of the algorithm is demonstrated by designing diffraction gratings with specific application to high power laser beam lines. Gratings are designed that act as beam deflectors, polarisers, polarising beam splitters, harmonic separation gratings and pulse compression gratings. By imposing fabrication constraints within the design process, we determine which of these elements have true potential for application within high power laser beam lines.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Genetic algorithm-based design method for multilevel anisotropic diffraction gratings
    Hiroyuki Okamoto
    Kohei Noda
    Moritsugu Sakamoto
    Tomoyuki Sasaki
    Yasuhiro Wada
    Nobuhiro Kawatsuki
    Hiroshi Ono
    Optical Review, 2017, 24 : 510 - 516
  • [22] On the design and fabrication of high efficiency inclined binary high frequency gratings
    deBeaucoudrey, N
    Miller, JM
    Chavel, P
    Turunen, J
    SPECIFICATION, PRODUCTION, AND TESTING OF OPTICAL COMPONENTS AND SYSTEMS, 1996, 2775 : 533 - 537
  • [23] High-end spectroscopic diffraction gratings: design and manufacturing
    Glaser, Tilman
    ADVANCED OPTICAL TECHNOLOGIES, 2015, 4 (01) : 25 - 46
  • [24] High resolution diffraction gratings
    Kowel, ST
    Lindquist, RG
    Nordin, GP
    Friends, M
    Kulick, JH
    LIQUID CRYSTAL MATERIALS, DEVICES, AND APPLICATIONS IV, 1996, 2651 : 56 - 67
  • [25] Multiobjective Optimal Design of High Frequency Transformers Using Genetic Algorithm
    Versele, C.
    Deblecker, O.
    Lobry, J.
    EPE: 2009 13TH EUROPEAN CONFERENCE ON POWER ELECTRONICS AND APPLICATIONS, VOLS 1-9, 2009, : 355 - 364
  • [26] Diamond Gratings Used for High power laser system
    Fan, Shuwei
    Song, Zhiqiang
    Wang, Hongxing
    OPTICAL COMPONENTS AND MATERIALS XVI, 2019, 10914
  • [27] A high power high frequency laser diodes driver
    Yankov, P
    Todorov, D
    27th International Spring Seminar on Electronics Technology, Books 1-3, Conference Proceedings: MEETING THE CHALLENGES OF ELECTRONICS TECHNOLOGY PROGRESS, 2004, : 451 - 452
  • [28] Diffraction of volume Bragg gratings under high flux laser irradiation
    Zhang, Xiang
    Feng, Jiansheng
    Xiong, Baoxing
    Zou, Kuaisheng
    Yuan, Xiao
    OPTICS EXPRESS, 2014, 22 (07): : 8291 - 8297
  • [29] High Power Single-Frequency Fibre Lasers: Design and Applications
    Ibsen, M.
    Zhang, Z.
    Pearson, L.
    Kim, J. W.
    Sahu, J. K.
    Clarkson, W. A.
    2010 15TH OPTOELECTRONICS AND COMMUNICATIONS CONFERENCE (OECC), 2010, : 182 - +
  • [30] Diffraction gratings: from principles to applications in high-intensity lasers
    Bonod, Nicolas
    Neauport, Jerome
    ADVANCES IN OPTICS AND PHOTONICS, 2016, 8 (01): : 156 - 199