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Inverse design and implementation of a wavelength demultiplexing grating coupler

机译:波长解复用光栅耦合器的逆向设计与实现

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摘要

Nanophotonics has emerged as a powerful tool for manipulating light on chips. Almost all of today's devices, however, have been designed using slow and ineffective brute-force search methods, leading in many cases to limited device performance. In this article, we provide a complete demonstration of our recently proposed inverse design technique, wherein the user specifies design constraints in the form of target fields rather than a dielectric constant profile, and in particular we use this method to demonstrate a new demultiplexing grating. The novel grating, which has not been developed using conventional techniques, accepts a vertical-incident Gaussian beam from a free-space and separates O-band (1300 nm) and C-band (1550 nm) light into separate waveguides. This inverse design concept is simple and extendable to a broad class of highly compact devices including frequency filters, mode converters, and spatial mode multiplexers.
机译:纳米光子学已经成为操纵芯片上光的强大工具。但是,当今几乎所有设备都是使用缓慢且无效的暴力搜索方法设计的,因此在许多情况下会限制设备性能。在本文中,我们提供了对我们最近提出的逆设计技术的完整演示,其中用户以目标场的形式而不是介电常数轮廓的形式指定设计约束,特别是,我们使用这种方法来演示新的多路分解光栅。新型光栅没有使用常规技术开发,它可以接收来自自由空间的垂直入射高斯光束,并将O波段(1300 nm)和C波段(1550 nm)的光分成单独的波导。这种反向设计概念很简单,并且可以扩展到包括频率滤波器,模式转换器和空间模式多路复用器在内的各种高度紧凑的设备。

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