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New measurements of atmospheric continuum for refinement of millimeter wave propagation models

机译:大气连续体的新测量以完善毫米波传播模型

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Results of extensive experimental study of the continuum absorption in a mixture of water vapor and nitrogen in millimeter wave band are presented. A new approach based on variation of the spectrometer optical path-length was employed to exclude systematic uncertainty caused by water adsorption on the cavity elements of the resonator spectrometer. It allowed investigation of the water-related continuum in a wide temperature range from −12 to +55°C including a first-time laboratory study of the continuum at temperatures below freezing. Detailed investigation of the continuum absorption dependences on radiation frequency and gas meteorological parameters is fulfilled. Coefficients of the common empirical parameterization of the continuum are derived and compared with results of the most known previous experimental and theoretical studies demonstrating very good qualitative and in some cases quantitative agreement. Dominating types of intermolecular interactions leading to the observed continuum are discussed. Parameterization of the total measured absorption (including contributions of the continuum and local lines) is made to provide the possibility of derivation of the continuum using any appropriate model of the resonance absorption. Additional analysis of the results is performed to demonstrate possible contribution of the systematic error due to water adsorption on the cavity elements of the resonator spectrometer.
机译:提出了在毫米波波段中水蒸气和氮气的混合物中连续吸收的广泛实验研究的结果。采用了一种基于光谱仪光程长度变化的新方法,以排除由于水吸附在谐振光谱仪的腔体元件上而引起的系统不确定性。它允许在-12至+ 55°C的宽温度范围内研究与水有关的连续体,包括首次在低于冰点的温度下对连续体进行实验室研究。详细研究了连续吸收对辐射频率和气体气象参数的依赖性。得出连续体的通用经验参数化的系数,并将其与最著名的先前实验和理论研究的结果进行比较,这些结果表明它们具有很好的定性,在某些情况下还具有定量一致性。讨论了导致观察到的连续体的分子间相互作用的主要类型。对总测得的吸收(包括连续谱和局部谱线的贡献)进行参数化,以提供使用任何合适的共振吸收模型推导连续谱的可能性。进行结果的附加分析,以证明由于水在谐振器光谱仪的空腔元件上的吸附而导致的系统误差的可能贡献。

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