Optical method for measuring thermal accommodation coefficients using a whispering-gallery microresonator

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Abstract

A novel optical method has been developed for the measurement of thermal accommodation coefficients in the temperature-jump regime. The temperature dependence of the resonant frequency of a fused-silica microresonators whispering-gallery mode is used to measure the rate at which the microresonator comes into thermal equilibrium with the ambient gas. The thermal relaxation time is related to the thermal conductivity of the gas under some simplifying assumptions and measuring this time as a function of gas pressure determines the thermal accommodation coefficient. Using a low-power tunable diode laser of wavelength around 1570 nm to probe a microspheres whispering-gallery mode through tapered-fiber coupling, we have measured the accommodation coefficients of air, helium, and nitrogen on fused silica at room temperature. In addition, by applying thin-film coatings to the microspheres surface, we have demonstrated that accommodation coefficients can be measured for various gases on a wide range of modified surfaces using this method. © 2011 American Institute of Physics.

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Ganta, D., Dale, E. B., Rezac, J. P., & Rosenberger, A. T. (2011). Optical method for measuring thermal accommodation coefficients using a whispering-gallery microresonator. Journal of Chemical Physics, 135(8). https://doi.org/10.1063/1.3631342

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