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Design Parameter Optimization of a Silicon-Based Grating Waveguide for Performance Improvement in Biochemical Sensor Application

机译:硅基光栅波导的设计参数优化以提高生化传感器应用的性能

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摘要

We performed numerical analysis and design parameter optimization of a silicon-based grating waveguide refractive index (RI) sensor. The performance of the grating waveguide RI sensor was determined by the full-width at half-maximum (FWHM) and the shift in the resonance wavelength in the transmission spectrum. The transmission extinction, a major figure-of-merit of an RI sensor that reflects both FWHM and resonance shift performance, could be significantly improved by the proper determination of three major grating waveguide parameters: duty ratio, grating period, and etching depth. We analyzed the transmission characteristics of the grating waveguide under various design parameter conditions using a finite-difference time domain method. We achieved a transmission extinction improvement of >26 dB under a given bioenvironmental target change by the proper choice of the design procedure and parameters. This design procedure and choice of appropriate parameters would enable the widespread application of silicon-based grating waveguide in high-performance RI biochemical sensor.
机译:我们对硅基光栅波导折射率(RI)传感器进行了数值分析和设计参数优化。光栅波导RI传感器的性能取决于最大半峰宽(FWHM)和透射光谱中谐振波长的偏移。通过适当确定三个主要的光栅波导参数:占空比,光栅周期和蚀刻深度,可以显着改善透射消光,它是反映FWHM和共振位移性能的RI传感器的主要优点。我们使用时域有限差分法分析了光栅波导在各种设计参数条件下的传输特性。通过适当选择设计程序和参数,在给定的生物环境目标变化下,我们实现了大于26 dB的消光改善。这种设计程序和适当参数的选择将使硅基光栅波导在高性能RI生化传感器中得到广泛应用。

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