Physical ray-tracing method for anisotropic optical media in GPGPU

A. Guerreiro, J. C. Costa, M. Gomes, R. Alves, N. Silva
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引用次数: 2

Abstract

In this paper we discuss the development of a fast ray-tracing solver for complex anisotropic uniaxial optical media based on heterogeneous supercomputing in GPGPU using PyOpenCl. This solver simulates both the propagation of ordinary and extraordinary rays, while taking into account the polarization rotation introduced by position dependent modulations of the optical axis of the medium. We demonstrate the application of this solver by simulating the generation of polarization caustics in random uniaxial optical media.
GPGPU中各向异性光介质的物理光线追踪方法
本文讨论了基于PyOpenCl的GPGPU异构超级计算的复杂各向异性单轴光介质快速光线追踪求解器的开发。该求解器模拟了普通和特殊光线的传播,同时考虑了由介质光轴的位置相关调制引入的偏振旋转。我们通过模拟随机单轴光介质中偏振焦散的产生来证明该求解器的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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