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Genetic algorithm-based design method for multilevel anisotropic diffraction gratings
Authors:Hiroyuki Okamoto  Kohei Noda  Moritsugu Sakamoto  Tomoyuki Sasaki  Yasuhiro Wada  Nobuhiro Kawatsuki  Hiroshi Ono
Affiliation:1.Department of Electrical, Electronics and Information Engineering,Nagaoka University of Technology,Nagaoka,Japan;2.Department of Creative Technology Engineering,National Institute of Technology, Anan College,Anan,Japan;3.Department of Applied Chemistry,University of Hyogo,Himeji,Japan
Abstract:We developed a method for the design of multilevel anisotropic diffraction gratings based on a genetic algorithm. The method is used to design the multilevel anisotropic diffraction gratings based on input data that represent the output from the required grating. The validity of the proposed method was evaluated by designing a multilevel anisotropic diffraction grating using the outputs from an orthogonal circular polarization grating. The design results corresponded to the orthogonal circular polarization grating structures that were used to provide outputs to act as the input data for the process. Comparison with existing design methods shows that the proposed method can reduce the number of human processes that are required to design multilevel anisotropic diffraction gratings. Additionally, the method will be able to design complex structures without any requirement for subsequent examination by a human designer. The method can contribute to the development of optical elements by designing multilevel anisotropic diffraction gratings.
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