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  4. Design and Analysis of Binary Fan-out Gratings based on Step-Transition Perturbation Approach
 
conference paper

Design and Analysis of Binary Fan-out Gratings based on Step-Transition Perturbation Approach

Kim, Dong Cheon  
•
Hermerschmidt, Andreas
•
Dyachenko, Pavel
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January 1, 2019
Laser Resonators, Microresonators, And Beam Control Xxi
Conference on Laser Resonators, Microresonators, and Beam Control XXI

Nowadays, diffractive optical elements are used for a variety of applications because of their high design flexibility, compact size, and mass productivity. At the same time, they require having high and complex optical functionalities such as a large number of diffraction orders and a wide diffraction angle, which is beyond the limits of scalar paraxial diffraction domain. We propose a stable and fast gradient-based optimization algorithm based on step-transition perturbation approach applied to design binary diffractive elements with small and many features for being performed in a large number of diffraction orders and wide diffraction angles. Using our optimization, we obtained high-performance elements than using optimization based on purely scalar theory. In addition, it needs much less calculation time than parametric optimization based on rigorous diffraction theory. Upon verification with the experimental results, we observed that our gradient-based optimization method is valid for 1-by-117 fan-out grating with some small features (on the order of the illumination wavelength) and about 22 degrees full pattern diffraction angle.

  • Details
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Type
conference paper
DOI
10.1117/12.2507925
Web of Science ID

WOS:000474767400025

Author(s)
Kim, Dong Cheon  
Hermerschmidt, Andreas
Dyachenko, Pavel
Scharf, Toralf  
Date Issued

2019-01-01

Publisher

SPIE-INT SOC OPTICAL ENGINEERING

Publisher place

Bellingham

Published in
Laser Resonators, Microresonators, And Beam Control Xxi
ISBN of the book

978-1-5106-2451-1

Series title/Series vol.

Proceedings of SPIE

Volume

10904

Start page

109041L

Subjects

Engineering, Electrical & Electronic

•

Optics

•

Physics, Applied

•

Engineering

•

Physics

•

binary fan-out grating

•

linear beam splitter

•

diffractive optical elements

•

gradient-based optimization

•

step-transition perturbation approach

•

rigorous coupled-wave analysis

•

fourier modal method

•

coupled-wave method

•

phase

•

diffraction

•

algorithm

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
NAM  
Event nameEvent placeEvent date
Conference on Laser Resonators, Microresonators, and Beam Control XXI

San Francisco, CA

Feb 04-07, 2019

Available on Infoscience
July 24, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/159310
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