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Collisional cooling investigation of THz rotational transitions of water

机译:水太赫兹旋转跃迁的逐级冷却研究

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摘要

An investigation of the pressure broadening by helium and hydrogen of six rotational transitions of water has been completed. The six transitions studied included two para water transitions (0(00)-1(11) and 1(11)-2(02)) and four ortho water transitions (1(01)-1(10), 2(21)-3(12), 3(03)-3(12) and 3(12)-3(21)) in the frequency region 0.55-1.17 THz. This survey was accomplished using the collisional cooling technique which allowed the broadening of each transition to be studied below the water condensation temperature. For each of the transitions studied, the temperature dependence of the pressure broadening by helium showed little dependence on temperature, while the broadening by hydrogen showed a sharp decrease at the lowest temperatures. This behavior was modeled, for each transition broadened by helium and hydrogen, with a power law, or a power law modified with a Boltzmann-like step function, and the results of these fits will be presented. In addition, an extensive investigation of the systematic error in the temperature of the water vapor in the collisional cooling experiment will be discussed. Finally, the impact of these new broadening measurements on models of star formation in the interstellar medium will be outlined.
机译:已经完成了对水的六个旋转过渡的氦气和氢气使压力变宽的研究。研究的六个过渡包括两个对位水过渡(0(00)-1(11)和1(11)-2(02))和四个邻位水过渡(1(01)-1(10),2(21) -3(12),3(03)-3(12)和3(12)-3(21))在0.55-1.17 THz的频率范围内。这项调查是使用碰撞冷却技术完成的,该技术允许在水冷凝温度以下研究每个过渡的扩展。对于每个研究的转变,氦气压力展宽的温度依赖性几乎不依赖于温度,而氢原子的展宽则在最低温度下急剧下降。对于这种行为进行了建模,对于每个由氦和氢扩大的跃迁,都具有幂定律或用玻尔兹曼式阶跃函数修改的幂定律,并将给出这些拟合的结果。此外,将对碰撞冷却实验中水蒸气温度的系统误差进行广泛研究。最后,将概述这些新的拓宽测量对星际介质中恒星形成模型的影响。

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