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High-Resolution Absorption Coefficient and Refractive Index Spectra of Carbon Monoxide Gas at Millimeter and Submillimeter Wavelengths

机译:一毫米和亚毫米波长的一氧化碳气体的高分辨率吸收系数和折射率谱

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摘要

The use of dispersive Fourier transform techniques in interferometry allows the measurement of absorption coefficient and refractive index spectra with great precision. This paper presents the absorption coefficient and refractive index spectra of carbon monoxide (CO) gas at millimeter and submillimeter wavelengths. To assess rotational lines of CO, the gas was measured at four different pressures, giving insight into the behavior of the spectral lines with varying parameters. The measurements in this study demonstrate that varying the pressure of the gas affects only the amplitude of the absorption lines and not their exact position. This is critical in air pollution studies when trying to single out a specific gas from a field sample with unknown constituents.
机译:在干涉测量中使用色散傅里叶变换技术可以非常精确地测量吸收系数和折射率光谱。本文介绍了在一毫米和亚毫米波长处的一氧化碳(CO)气体的吸收系数和折射率光谱。为了评估CO的旋转线,在四个不同的压力下测量了气体,从而深入了解了具有变化参数的光谱线的行为。这项研究中的测量结果表明,改变气体压力只会影响吸收线的幅度,而不会影响其确切位置。当试图从具有未知成分的野外样本中选择特定气体时,这对于空气污染研究至关重要。

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