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逆严格共形变换在波导器件设计中的应用。

Application of inverse, strict conformal transformation to design waveguide devices.

作者信息

Ma Y G, Wang N, Ong C K

机构信息

Temasek Laboratories, National University of Singapore, Singapore 117411, Singapore.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2010 May 1;27(5):968-72. doi: 10.1364/JOSAA.27.000968.

Abstract

Integration of transformation optics with development of metamaterials offers great opportunities to create exotic material with electromagnetic functionality absent from nature. It has already led to several significant advancements in physical conceptions and technological applications such as invisible cloaking. Unfortunately practical application is often restricted by the complex requirements on material properties imposed by the general optical transformation theory. It is therefore necessary to relax the stringent requirements of materials properties in order to practicably use the power of transformation optics to design exotic optical devices. Development of new coordinate transformation mathematics to compromise between the stringent materials properties and the ultimate performance required by a useful novel device is required. In this work the authors employed strict conformal transformation to design physical materials that could guide light in a predetermined way. A simple and efficient numerical approach based on unusual inverse transformation is proposed here to quickly solve partial differential equations and construct the mapping relationship. The results showed that a transformed optical device could be made by purely using isotropic dielectric materials. Two application examples were numerically proposed to verify the versatility of conformal transformation and the robustness of the inverse approach. One was a 90 degrees waveguide beam bend, and the other was a waveguide-type beam splitter or coupler.

摘要

变换光学与超材料的发展相结合,为创造具有自然界所没有的电磁功能的奇异材料提供了巨大机遇。它已经在诸如隐形斗篷等物理概念和技术应用方面带来了多项重大进展。不幸的是,实际应用常常受到一般光学变换理论对材料特性所提出的复杂要求的限制。因此,有必要放宽对材料特性的严格要求,以便切实利用变换光学的力量来设计奇异的光学器件。需要开发新的坐标变换数学方法,以在严格的材料特性与有用的新型器件所需的最终性能之间达成折衷。在这项工作中,作者采用严格的共形变换来设计能够以预定方式引导光的物理材料。本文提出了一种基于非同寻常的逆变换的简单高效数值方法,以快速求解偏微分方程并构建映射关系。结果表明,仅使用各向同性介电材料就可以制成变换光学器件。数值给出了两个应用实例,以验证共形变换的通用性和逆方法的稳健性。一个是90度波导光束弯曲,另一个是波导型分束器或耦合器。

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