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Progress in rigorous and extremely fast electromagnetic methods for diffraction computations

机译:衍射计算严格和极快的电磁方法的进展

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There is a growing demand for and a lack of ultrafast, memory sparing but rigorous light scattering calculation techniques for large planar 2D diffracting objects. A good approach to these requirements is the Generalized Source Method (GSM) formulated in Fourier space [1] and its ongoing improvement. In this contribution, we report on recent improvements achieved by switching from CPU to GPU computations, application of the scattering-vector (S-vector) algorithm [2, 3] and extrapolation techniques [6]. 138-139 Volumetric diffractive optical elements in non-oxide photosensitive chalcogenide glass-based layers A. Joerg$1J. Lumeau$1; $1Aix-Marseille Universite, CNRS, Centrale Marseille, Institut Fresnel, UMR 7249,13013 Marseille - France; ;; This paper describes the fabrication of volumetric diffractive optical elements (DOEs) based on chalcogenide glass. Phase change is not obtained by a local change of the thickness of the layers but by a local refractive index change using the photosensitivity of the glasses. High quality binary and multilevel DOEs are demonstrated.
机译:对于大型平面2D衍射物体,对大型平面2D衍射物体的需求不断增长和缺乏超快,记忆备件,但缺乏光散射计算技术。这些要求的良好方法是在傅里叶空间[1]中配制的广义源方法(GSM)及其持续改进。在这一贡献中,我们报告了通过从CPU切换到GPU计算而实现的最近改进,散射 - 向量(S-Vector)算法[2,3]和外推技术[6]。 138-139非氧化物光敏性硫醇化物玻璃基层的容量衍射光学元件A. Joerg $ 1J。 Lumeau 1美元; $ 1aix-marseille Universite,CNRS,Centrale Marseille,Institut Fresnel,UMR 7249,130​​13 Marseille - 法国; ;;本文介绍了基于硫属化物玻璃的体积衍射光学元件(DI)的制造。通过局部改变层的局部变化来获得相变,而是使用玻璃的光敏性的局部折射率变化。展示了高质量的二进制和多级。

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