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SUBWAVELENGTH TRANSMISSION GRATING RETARDERS FOR USE AT 10.6-MU-M

机译:次波长传输光栅延迟器,用于10.6-MU-M

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摘要

Designs are given for gallium-arsenide subwavelength grating retarders operating at 10.6 mu m. A design procedure is detailed that takes into account the reflections at all surfaces and that uses numerical optimization to improve the transmittance of the retarders to nearly 100%. It is shown that the homogeneous uniaxial layer model for subwavelength gratings can be used to provide starting points for the Nelder-Mead simplex optimization, obviating the need for stochastic optimization techniques such as simulated annealing. An analysis of the designs with respect to wavelength, angle of incidence, and fabrication tolerances indicates that such grating retarders will perform favorably compared with commercial alternatives. (C) 1996 Optical Society of America [References: 31]
机译:设计了工作在10.6微米的砷化镓亚波长光栅延迟器。详细的设计过程将考虑所有表面的反射,并使用数值优化将延迟器的透射率提高到近100%。结果表明,亚波长光栅的同质单轴层模型可用于提供Nelder-Mead单纯形优化的起点,从而消除了对诸如模拟退火之类的随机优化技术的需求。关于波长,入射角和制造公差的设计分析表明,与商业替代产品相比,这种光栅延迟器将具有良好的性能。 (C)1996年美国眼镜学会[参考文献:31]

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