高光密度下Hg (61S0-63P1)多路光谱展宽的温度依赖性

Walter Braun, Milton D Scheer, Victor Kaufman
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引用次数: 8

摘要

已经开发出一种新方法,用于测定由激波通过或红外激光吸收亚微秒辐射脉冲等瞬态现象加热的气体中快速变化的平动温度。该方法依赖于微量汞蒸气的使用及其对253.7 nm同位素和超精细多倍体附近辐射的吸收。当汞原子感知宿主气体的平移温度变化时,由于多谱线的多普勒和洛伦兹展宽,对253.7 nm辐射的吸收也发生了变化。在253.7 nm附近的汞放电光源的发射光谱,即使在大的光密度下,也可以很容易地用双区计算机模型模拟。在这些计算中使用的相同的灯参数也可以用来模拟实验压力和温度对总积分吸收的依赖。这提供了一种获得温度校准曲线的方法,用于监测经历快速加热或冷却的气体的变化平移温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Temperature Dependence of Spectral Broadening in the Hg (61S0-63P1) Multiplet At High Optical Densities.

A new method has been developed for determining rapidly changing translational temperatures in a gas that has been heated by such transient phenomena as the passage of a shock wave or the absorption of sub-microsecond pulses of radiation from an infrared laser. The method depends upon the use of trace amounts of Hg vapor and its absorption of radiation in the neighborhood of the 253.7 nm isotopic and hyperfine multiplet. As the Hg atoms sense changes in the translational temperature of the host gas, the absorption of 253.7 nm radiation also changes by virtue of the Doppler and Lorentz broadening of the multiplet lines. Emission spectra of a Hg discharge light source in the neighborhood of 253.7 nm were shown to be readily simulated by a two zone computer model even at large optical densities. The same lamp parameters that were used in these calculations could also be used to simulate the experimental pressure and temperature dependence of the total integrated absorption. This provided a means for obtaining the temperature calibration curves needed to monitor the changing translational temperature of a gas undergoing rapid heating or cooling.

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