Direct optimization of Y-branch silicon nitride optical waveguide for evanescent field biosensor

K. N. Khor, M. Shahimin, F. Adikan
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引用次数: 7

Abstract

Evanescent field had been widely used in bio and chemical sensors. However in most cases, evanescent field is not maximized and consequently produced an unoptimized sensor performance. It is the aim of the paper to optimize the design of 1:2 Y-branch splitter optical waveguide through simulation by using FD-BPM. Y-branch splitter are simulated to optimize the power loss. Width of waveguide and effective angle are manipulated in the power loss optimization. The result shows that evanescent field is maximized at optimized thickness and width. The result suggests that Y -branch splitter with width of 25 μm and effective angle of 6.24° is the best design for evanescent field sensor application with both high sensitivity and signal to noise ratio.
用于瞬变场生物传感器的y分支氮化硅光波导的直接优化
倏逝场在生物和化学传感器中有着广泛的应用。然而,在大多数情况下,倏逝场没有最大化,从而产生非优化的传感器性能。本文的目的是通过FD-BPM仿真来优化设计1:2 y分支分路光波导。对y支路分路器进行仿真,优化功率损耗。在功率损耗优化中对波导宽度和有效角度进行了控制。结果表明,在最优厚度和宽度下,倏逝场最大。结果表明,宽度为25 μm、有效角为6.24°的Y支路分路器具有较高的灵敏度和信噪比,是应用于倏逝场传感器的最佳设计方案。
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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