Peterson J C, Thomas M E, Nordstrom R J, Damon E K, Long R K
Appl Opt. 1979 Mar 15;18(6):834-41. doi: 10.1364/AO.18.000834.
In this paper we report the results of a series of pressure-broadened water vapor absorption measurements at 27 CO(2) laser frequencies between 935 cm(-1) and 1082 cm(-1). Both multiple traversal cell and optoacoustic (spectrophone) techniques were utilized together with an electronically stabilized cw CO(2) laser. Comparison of the results obtained by these two methods shows remarkable agreement, indicating a precision which has not been previously achieved in pressure-broadened studies of water vapor. The data of 10.59 microm substantiate the existence of the large (>200) self-broadening coefficients determined in an earlier study by McCoy. In this work we have treated the case of water vapor in N(2) at a total pressure of 1 atm. We have also studied water vapor in air and will report those results separately.
在本文中,我们报告了一系列在935厘米⁻¹至1082厘米⁻¹之间的27个CO₂激光频率下进行的压力加宽水蒸气吸收测量结果。多次遍历池技术和光声(分光电话)技术与电子稳定的连续波CO₂激光一起使用。这两种方法所获结果的比较显示出显著的一致性,表明在水蒸气压力加宽研究中达到了此前未有的精度。10.59微米的数据证实了麦科伊早期研究中确定的大(>200)自加宽系数的存在。在这项工作中,我们研究了总压为1个大气压时氮气中水蒸气的情况。我们还研究了空气中的水蒸气,并将单独报告那些结果。