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new fine structure cooling rate

机译:新型精细结构冷却速度

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One of the dominant electron cooling processes in the ionosphere is caused by electron impact induced fine structure transitions among the ground state levels of atomic oxygen. This fine structure cooling rate is based on theoretical cross sections. Recent advances in the numerical cross section determinations to include polarization effects and more accurate representations of the atomic target result in new lower values. These cross sections are employed in this paper to derive a new fine structure cooling rate which is between 40 and 60 of the currently used rate. A new generalized formula is presented for the cooling rate (from which the fine structure cooling rate is derived), valid for arbitrary mass and temperature difference of the colliding particles and arbitrary inelastic energy difference.
机译:电离层中占主导地位的电子冷却过程之一是由电子撞击引起的原子氧基态能级之间的精细结构转变引起的。这种精细结构的冷却速率基于理论截面。包括偏振效应和更精确的原子目标表示在内的数值横截面测定的最新进展导致了新的较低值。本文利用这些截面推导出一种新的精细结构冷却速率,该冷却速率在当前使用的冷却速率的40%至60%之间。提出了一种新的广义公式,用于冷却速率(由此推导出精细结构冷却速率),该公式适用于碰撞颗粒的任意质量和温差以及任意非弹性能量差。

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