首页> 外文会议>Conference on Laser Resonators and Beam Control; 20080121-22; San Jose,CA(US) >Investigating properties of surfaces and thin films using microsphere whispering-gallery modes
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Investigating properties of surfaces and thin films using microsphere whispering-gallery modes

机译:使用微球耳语画廊模式研究表面和薄膜的特性

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We use a tunable diode laser operating near 1570 nm to investigate various effects of the heat transfer from fused-silica microspheres, with and without thin-film coatings, to the surrounding gas in a vacuum chamber. The resonance frequencies of microsphere whispering-gallery modes (WGMs), excited by a tapered-fiber coupler, shift with changing temperature (about -1.6 GHz/K at 1570 nm). This shift, primarily due to the temperature dependence of the refractive index of fused silica, enables the measurements whose results are reported here: determination of the thermal accommodation coefficient of air on different surfaces, and measurement of the optical absorption coefficients of surface water layers and of a thin film coating. Our method for determining thermal accommodation coefficients involves deducing the thermal conductivity of the air as a function of pressure by measuring the relaxation rate of an externally heated microsphere to room temperature. Then, in a separate experiment, by observing thermal optical bistability of the WGM resonances caused by absorption of the probe laser, the contribution of water or film absorption to the total loss is found.
机译:我们使用工作在1570 nm附近的可调二极管激光器来研究从有和没有薄膜涂层的熔融石英微球到真空室内周围气体的热传递的各种影响。由锥形光纤耦合器激发的微球耳语画廊模式(WGM)的共振频率随温度变化而移动(在1570 nm处约为-1.6 GHz / K)。这种变化主要归因于熔融石英折射率的温度依赖性,因此可以进行以下测量,其结果报告如下:确定空气在不同表面上的热调节系数,以及测量表面水层和表面的吸光系数薄膜涂层。我们确定热调节系数的方法包括通过测量外部加热的微球对室温的弛豫率来推导空气的导热系数与压力的关系。然后,在另一个实验中,通过观察由探测激光的吸收引起的WGM共振的热光学双稳态,发现水或薄膜吸收对总损耗的贡献。

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