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Multiproperty empirical isotropic interatomic potentials for CH4–inert gas mixtures

机译:CH4惰性气体混合物的多性质经验各向同性原子间势

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摘要

An approximate empirical isotropic interatomic potentials for CH4–inert gas mixtures are developed by simultaneously fitting the Exponential-Spline-Morse-Spline-van der Waals (ESMSV) potential form to viscosity, thermal conductivity, thermal diffusion factors, diffusion coefficient, interaction second pressure virial coefficient and scattering cross-section data. Quantum mechanical lineshapes of collision-induced absorption (CIA) at different temperatures for CH4–He and at T = 87 K for CH4–Ar are computed using theoretical values for overlap, octopole and hexadecapole mechanisms and interaction potential as input. Also, the quantum mechanical lineshapes of collision-induced light scattering (CILS) for the mixtures CH4–Ar and CH4–Xe at room temperature are calculated. The spectra of scattering consist essentially of an intense, purely translational component which includes scattering due to free pairs and bound dimers, and the other is due to the induced rotational scattering. These spectra have been interpreted by means of pair-polarizability terms, which arise from a long-range dipole-induced-dipole (DID) with small dispersion corrections and a short-range interaction mechanism involving higher-order dipole–quadrupole >A and dipole–octopole >E multipole polarizabilities. Good agreement between computed and experimental lineshapes of both absorption and scattering is obtained when the models of potential, interaction-induced dipole and polarizability components are used.
机译:通过同时拟合指数-样条-莫尔斯-样条-范德华(ESMSV)势能形式与粘度,导热系数,热扩散因子,扩散系数,相互作用的第二压力,得出CH4惰性气体混合物的近似经验各向同性原子间势。维里系数和散射截面数据。 CH4–He在不同温度下的碰撞诱导吸收(CIA)和CH4–Ar在T = 87 K时的量子力学线形是使用重叠,八极和十六极机制的理论值以及相互作用势作为输入来计算的。同样,计算了室温下CH4-Ar和CH4-Xe混合物的碰撞诱导光散射(CILS)的量子力学线形。散射光谱主要由强烈的纯平移分量组成,该分量包括由于自由对和结合的二聚体引起的散射,另一个是由于诱导的旋转散射引起的。这些光谱已通过成对可极化性术语进行解释,这是由具有小色散校正的长距离偶极子诱发的偶极子(DID)和涉及高阶偶极子-四极子的短程相互作用机制产生的。 和偶极–八极杆> E 多极极化率。当使用电势,相互作用引起的偶极子和极化率分量的模型时,在吸收和散射的计算和实验线形之间都取得了良好的一致性。

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