集成波导调制器的分段缝隙波导设计

Musab A. M. Al-Tarawni, A. Bakar, A. M. Md Zain
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引用次数: 4

摘要

本文对分段缝隙波导结构进行了设计和数值分析。我们对不同分段槽波导结构的重叠因子和低半电压进行了理论研究,以确定基于槽宽度的优化几何尺寸。结果表明,在200和300 nm的周期中,在100 nm的槽宽处出现了高重叠因子和低半电压,而在400 nm的周期中,该宽度为125 nm。因此,与传统槽波导相比,实现非常低的Vπ证明了分段槽波导的高灵敏度和传感器应用中前所未有的传感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design segmented slot waveguide for integrated waveguide modulator
In this article, segmented slot waveguide structures are designed and analysed numerically. We present a theoretical investigation of overlap factors and low half voltage for different segmented slot waveguide structures to determine optimised geometrical dimensions based on slot widths. Results shows that high overlap factor, and low half voltage, occurs for 200 and 300 nm periodicities at a 100 nm slot width, while for a 400 nm periodicity this width is 125 nm. Thus, achieving a very low Vπ compared to conventional slot waveguides demonstrates a high sensitivity of segmented slot waveguide and unprecedented sensing in a sensor application.
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