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Spectral shift response of optical whispering-gallery modes due to water vapor adsorption and desorption

机译:水蒸气吸附和解吸引起的光学耳语模式的光谱位移响应

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The spectral shift response of optical whispering-gallery modes due to the adsorption and desorption of water molecules into a SiO_(2) nano-coating is investigated. This coating is applied to a silica microsphere and optical-shift measurements are made at a very low humidity level (<10percent). The micro-optical coupling system is incorporated into a sealed vacuum chamber for controlled humidity testing. The experimental observation of the whispering-gallery-mode spectral shift with refractive index is consistent with a theoretical analysis using Mie theory. A significant hysteresis effect is observed in the spectral shift of individual whispering-gallery modes during variable humidity tests. To understand the hysteresis mechanism, tests with step changes in humidity are performed, which reveal complex and dynamic water molecule transport phenomena between the nano-coating and surrounding environment.
机译:研究了由于水分子在SiO_(2)纳米涂层中的吸附和解吸而引起的光学耳语模式的光谱位移响应。将该涂层施用于二氧化硅微球,并在非常低的湿度水平(<10%)下进行光学位移测量。将微光学耦合系统集成到密封的真空室中,以进行受控的湿度测试。具有折射率的耳语-画廊模式光谱偏移的实验观察与使用Mie理论的理论分析是一致的。在可变湿度测试期间,在各个耳语画廊模式的光谱偏移中观察到明显的滞后效应。为了理解滞后机理,进行了湿度逐步变化的测试,揭示了纳米涂层与周围环境之间复杂而动态的水分子传输现象。

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