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用于化学气相传感器开发的环形谐振器分析。

Analysis of ring resonators for chemical vapor sensor development.

作者信息

Sun Yuze, Fan Xudong

机构信息

Department of Biological Engineering, University of Missouri, 240D Bond Life Sciences Center, 1201 E. Rollins Street, Columbia, MO 65211, USA.

出版信息

Opt Express. 2008 Jul 7;16(14):10254-68. doi: 10.1364/oe.16.010254.

Abstract

We carry out simulations based on a four-layer Mie model to systematically analyze the sensing performance of ring resonator chemical vapor sensors. Two sensor configurations are investigated, in which a polymer layer is coated on either interior or exterior surface of a fused silica cylindrical ring resonator. Upon the interaction of the polymer and the vapor analyte, the refractive index (RI) and the thickness of the polymer layer change, leading to a spectral shift in the resonant modes that are supported by the ring resonator. The RI sensitivity and thickness sensitivity are studied as a function of the polymer coating thickness and RI, the ring resonator size and wall thickness, and resonant mode order and polarization. Similarities and differences between the two sensor configurations are also discussed. Our work should provide a general guidance in development of sensitive ring resonator chemical vapor sensors.

摘要

我们基于四层米氏模型进行模拟,以系统地分析环形谐振器化学蒸汽传感器的传感性能。研究了两种传感器配置,其中聚合物层涂覆在熔融石英圆柱形环形谐振器的内表面或外表面上。当聚合物与蒸汽分析物相互作用时,聚合物层的折射率(RI)和厚度会发生变化,从而导致环形谐振器所支持的谐振模式发生光谱偏移。研究了RI灵敏度和厚度灵敏度与聚合物涂层厚度和RI、环形谐振器尺寸和壁厚以及谐振模式阶数和偏振的函数关系。还讨论了两种传感器配置之间的异同。我们的工作应为开发灵敏的环形谐振器化学蒸汽传感器提供一般性指导。

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