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Mixed Quantum/Classical Calculations of Total and Differential Elastic and Rotationally Inelastic Scattering Cross Sections for Light and Heavy Reduced Masses in a Broad Range of Collision Energies

机译:轻质和重质轻质物质在大范围碰撞能量中的总和微分弹性和旋转非弹性散射截面的混合量子/经典计算

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摘要

The mixed quantum/classical theory (MQCT) for rotationally inelastic scattering developed recently [A. Semenov and D. Babikov, J. Chem. Phys.139, 174108 (2013)] is benchmarked against the full quantum calculations for two molecular systems: He + H2 and Na + N2. This allows testing new method in the cases of light and reasonably heavy reduced masses, for small and large rotational quanta, in a broad range of collision energies and rotational excitations. The resultant collision cross sections vary through ten-orders of magnitude range of values. Both inelastic and elastic channels are considered, as well as differential (over scattering angle) cross sections. In many cases results of the mixed quantum/classical method are hard to distinguish from the full quantum results. In less favorable cases (light masses, larger quanta, and small collision energies) some deviations are observed but, even in the worst cases, they are within 25% or so. The method is computationally cheap and particularly accurate at higher energies, heavier masses, and larger densities of states. At these conditions MQCT represents a useful alternative to the standard full-quantum scattering theory.
机译:旋转非弹性散射的混合量子/经典理论(MQCT)最近得到了发展[A. Semenov和D.Babikov,J.Chem。 Phys.139,174108(2013)]相对于两个分子系统He + H2和Na + N2的完整量子计算基准。这样就可以在较小的碰撞质量和相对较大的旋转量子的情况下,在较大的碰撞能量和旋转激励范围内,对重量轻且合理重的情况测试新方法。最终的碰撞横截面会在十个数量级的值范围内变化。既考虑了非弹性通道,也考虑了弹性通道以及微分(超过散射角)横截面。在许多情况下,混合量子/经典方法的结果很难与全量子结果区分开。在较不理想的情况下(轻质量,较大的量子和较小的碰撞能量),会观察到一些偏差,但即使在最坏的情况下,偏差也在25%左右以内。该方法在计算上便宜,并且在较高的能量,较重的质量和较大的状态密度下特别准确。在这些条件下,MQCT代表了标准全量子散射理论的有用替代方法。

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