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Fast propagation of electromagnetic fields through graded-index media

机译:通过分级索引介质快速传播电磁场

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摘要

Graded-index (GRIN) media are widely used for modeling different situations: some components are designed considering GRIN modulation, e.g., multi-mode fibers, optical lenses, or acousto-optical modulators; on the other hand, there are other components where the refractive-index variation is undesired due to, e.g., stress or heating; and finally, some effects in nature are characterized by a GRIN variation, like turbulence in air or biological tissues. Modeling electromagnetic fields propagating in GRIN media is then of high importance for optical simulation and design. Though ray tracing can be used to evaluate some basic effects in GRIN media, the field properties are not considered and evaluated. The general physical optics techniques, like finite element method or finite difference time domain, can be used to calculate fields in GRIN media, but they need great numerical effort or may even be impractical for large-scale components. Therefore, there still exists a demand for a fast physical optics model of field propagation through GRIN media on a large scale, which will be explored in this paper. (c) 2018 Optical Society of America
机译:渐变索引(GRIN)介质广泛用于建模不同的情况:设计了一些组件,考虑了GRIN调制,例如多模纤维,光学镜头或声光调制器;另一方面,由于例如应力或加热,存在不需要折射率变化的其他组分。最后,在自然界中的一些效果的特征在于笑容变异,如空气或生物组织中的湍流。然后,在笑介质中传播的电磁场的建模对于光学仿真和设计具有高度重视。虽然光线跟踪可用于评估笑容介质中的一些基本效果,但不考虑和评估现场性质。一般物理光学技术,如有限元方法或有限差分时间域,可用于计算咧嘴介质中的字段,但它们需要大量的数值努力,或者对于大规模组件甚至可能是不切实际的。因此,仍然存在通过大规模的笑容介质通过笑容传播的快速物理光学模型,这将在本文中探讨。 (c)2018年光学学会

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