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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Development and interconnections of the temperatures in the translational, rotational and vibrational degrees of freedom in a potassium monomer/dimer beam
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Development and interconnections of the temperatures in the translational, rotational and vibrational degrees of freedom in a potassium monomer/dimer beam

机译:钾单体/二聚体射束的平移,旋转和振动自由度中温度的发展和相互联系

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摘要

Translational population distributions were measured in a potassium beam for monomers and dimers under different stagnation conditions. Furthermore, rotational population distributions were measured for the dimers in the vibrational levels = 0,1,2. Non-equilibrium distributions were found for rotation and vibration. We describe the rotational and vibrational distributions by new formulas based on the concept of the level-local temperature. Within the error bars we find congruence of the rotational level-local temperature with the translational temperature in the same level. We present a new analytical formula for the average rotational temperature and rotational energy in the same level. We find congruence for the average rotational and average translational temperature. Furthermore, we find that the rotational distribution in = 0 is significant different from the distributions in = 1,2. The reason for this is the dependence of the rotational distribution on the entire potential energy and not only on the rotational energy within one vibrational level. We present a new procedure to find the complete rotational distributin of the vibrational ground level ny measuring only the temperature and the Mach number of the monomers and dimers. Furthermore, we present new formulas for the fractions of the relaxed and non-relaxed dimers in the measured distributions.
机译:在不同的停滞条件下,在钾束中测量了单体和二聚体的平移种群分布。此外,在振动水平= 0,1,2时,测量了二聚体的旋转种群分布。发现旋转和振动的非平衡分布。我们基于水平局部温度的概念通过新公式描述了旋转和振动分布。在误差条内,我们发现旋转水平局部温度与平移温度处于同一水平。我们为平均旋转温度和相同水平的旋转能量提供了一个新的解析公式。我们发现平均旋转温度和平均平移温度一致。此外,我们发现in = 0中的旋转分布与in = 1,2中的旋转分布显着不同。其原因是旋转分布取决于整个势能,而不仅取决于一个振动水平内的旋转能量。我们提出了一种新的程序,可以找到仅测量单体和二聚体的温度以及马赫数的振动地平面ny的完整旋转分布。此外,我们为测量分布中的松弛和非松弛二聚体的分数提供了新的公式。

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