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Analysis of electron interactions in dielectric gases

机译:介电气体中电子相互作用的分析

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We present and discuss results concerning electron interactions processes of dielectric gases and their relationship with the macroscopic behavior of these gases, in particular, with their dielectric strength. Such analysis is based on calculating energies of reactions for molecular ionization, dissociative ionization, parent negative ion formation, and dissociative electron attachment processes. We hypothesize that the estimation of the required energy for a reduced number of processes that take place in electrically stressed gases could be related to the gas' capability to manage the electron flow during an electrical discharge. All calculations were done with semiempirical quantum chemistry methods, including an initial optimization of molecular geometry and heat of formation of the dielectric gases and all of species that appear during electron interaction reactions. The performance of semiempirical methods Austin model 1 and Parametric model 3 (PM3) was compared for several compounds, PM3 being superior in most cases. Calculations performed for a sample of nine dielectric gases show that electron attachment and detachment processes occur in different energy bands that do not overlap for any value of the dielectric strength. We have also analyzed the relationship between dielectric strength and two physical properties: electron affinity and ionization energy. Calculations performed for 43 dielectric gases show no clear correlation between them, although certain guidelines for the qualitative estimation of dielectric strength can still be assessed. (c) 2007 American Institute of Physics.
机译:我们介绍并讨论了有关介电气体的电子相互作用过程及其与这些气体的宏观行为的关系的结果,特别是与它们的介电强度的关系。这种分析基于计算分子电离、解离电离、母体负离子形成和解离电子附着过程的反应能量。我们假设,在电应力气体中发生的减少过程所需能量的估计可能与气体在放电期间管理电子流的能力有关。所有计算都是用半经验量子化学方法完成的,包括对介电气体的分子几何形状和形成热以及电子相互作用反应中出现的所有物质的初步优化。比较了几种化合物的半经验方法 Austin 模型 1 和参数模型 3 (PM3) 的性能,PM3 在大多数情况下更胜一筹。对九种介电气体样品进行的计算表明,电子附着和分离过程发生在不同的能带中,这些能带对于任何介电强度值都不重叠。我们还分析了介电强度与两种物理性质之间的关系:电子亲和力和电离能。对 43 种介电气体进行的计算表明它们之间没有明显的相关性,尽管仍然可以评估某些介电强度定性估计的指南。(c) 2007年美国物理研究所。

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