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Microwave Enhanced Polarization in a Carbon Dioxide Molecule

机译:二氧化碳分子中的微波增强极化

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This paper presents the results of the dielectric response of carbon dioxide measured using a loaded microwave cavity operating in the TE_(011) mode of a cylindrical cavity near the frequencies 8.8, 9.7 and 10.2 GHz. The temperature dependence of the dielectric response of gas phase CO_2 over the range of 160 to 213°K (-113 to -60℃) was measured. Slater perturbation equations for loaded resonant cavities were used to relate the macroscopic parameters △f and △(1/Q) to the real and imaginary parts, ε′ and ε″, respectively, hence to calculate the dielectric parameters at each temperature and frequency. Selected peaks in the dielectric response were identified to indicate the frequencies at which strong coupling between the microwave field and the CO_2 molecules can be achieved.
机译:本文介绍了使用在8.8、9.7和10.2 GHz频率附近的圆柱形腔体以TE_(011)模式工作的加载微波腔体测量的二氧化碳介电响应结果。在160至213°K(-113至-60℃)范围内测量了气相CO_2介电响应的温度依赖性。使用加载共振腔的Slater摄动方程,将宏观参数Δf和△(1 / Q)分别与实部和虚部ε'和ε''相关联,从而计算出每个温度和频率下的介电参数。确定介电响应中的选定峰以指示可以实现微波场与CO_2分子之间的强耦合的频率。

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