首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Sensitive label-free and compact ultrasonic sensor based on double silicon-on-insulator slot micro-ring resonators
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Sensitive label-free and compact ultrasonic sensor based on double silicon-on-insulator slot micro-ring resonators

机译:基于双芯绝缘子槽微环谐振器的敏感标签和紧凑型超声波传感器

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摘要

We propose a new label-free ultrasonic sensor, which comprises a slot wave-guide and double silicon-on-insulator (SOI) slot micro-ring resonators. The all-optical sensors do not suffer from electromagnetic interference. We choose to integrate a silicon slot double micro-ring (SDMR) resonators in an acoustically resonant membrane. Optimization of the several key structural parameters is investigated to achieve the mode-field distributions of transmission spectrum based on Comsol Multiphysics software. Our numerical studies show that the proposed ultrasonic sensor offers higher sensitivity and a larger detection frequency range than conventional piezoelectric based ultrasound transducer. For a SDMR system with an area of 15 mu m x 30 mu m, sensitivity as high as 2453.7mV/kPa, and over a bandwidth range of 1-150MHz. The sensitivity value is 36 times higher than that of single slot micro-ring ultrasonic sensor. The theoretical Q-factor of the SDMR can be approximately 1.24 x 10(6) with bending radius of 5 mu m. The investigation on the SDMR system is a valuable exploration of the photo-acoustic microscopy for the ultra-high Q factor and large frequency range.
机译:我们提出了一种新的无标签超声波传感器,包括槽波导向器和双硅 - 绝缘体(SOI)槽微环谐振器。全光学传感器不遭受电磁干扰。我们选择将硅槽双微环(SDMR)谐振器集成在声学谐振膜中。研究了几个关键结构参数的优化,实现了基于COMSOL多体软件的传输频谱的模式分布。我们的数值研究表明,所提出的超声波传感器提供更高的灵敏度和比传统的压电基超声换能器更高的检测频率范围。对于面积为15μm×30μm的SDMR系统,敏感性高达2453.7mV / KPa,并且在1-150MHz的带宽范围内。灵敏度值比单槽微环超声波传感器高36倍。 SDMR的理论Q系数可以是大约1.24×10(6),弯曲半径为5μm。对SDMR系统的调查是对超高Q因子和大频率范围的光声显微镜的有价值探索。

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