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Dissociation cross sections for N2 + N → 3N and O2 + O → 3O using the QCT method

机译:使用QCT方法对N2 + N→3N和O2 + O→3O的解离截面

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摘要

Cross sections for the homo-nuclear atom-diatom collision induced dissociations (CIDs): N2 + N and O2 + O are calculated using Quasi-Classical Trajectory (QCT) method on ab initio Potential Energy Surfaces (PESs). A number of studies for these reactions carried out in the past focused on the CID cross section values generated using London-Eyring-Polanyi-Sato PES and seldom listed the CID cross section data. A highly accurate CASSCF-CASPT2 N3 and a new O3 global PES are used for the present QCT analysis and the CID cross section data up to 30 eV relative energy are also published. In addition, an interpolating scheme based on spectroscopic data is introduced that fits the CID cross section for the entire ro-vibrational spectrum using QCT data generated at chosen ro-vibrational levels. The rate coefficients calculated using the generated CID cross section compare satisfactorily with the existing experimental and theoretical results. The CID cross section data generated will find an application in the development of a more precise chemical reaction model for Direct Simulation Monte Carlo code simulating hypersonic re-entry flows.
机译:同核原子-硅原子碰撞诱导解离(CID)的横截面是使用准经典轨道(QCT)方法从头算势能面(PES)计算出N2 + N和O2 + O的。过去,针对这些反应的许多研究都集中在使用London-Eyring-Polanyi-Sato PES生成的CID横截面值上,很少列出CID横截面数据。高精度CASSCF-CASPT2 N3和新的O3全局PES用于当前的QCT分析,并且还发布了相对能量高达30 eV的CID截面数据。另外,引入了一种基于光谱数据的插值方案,该方案使用在选定的振动水平上生成的QCT数据来拟合整个振动光谱的CID截面。使用生成的CID横截面计算出的速率系数与现有的实验和理论结果令人满意。生成的CID横截面数据将在开发更精确的化学反应模型中应用,该模型用于直接模拟蒙特卡罗代码以模拟高超音速再入流。

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