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Time-dependent quantum mechanical calculations on H + O_2 for total angular momentum J>0 II: On the importance of Coriolis coupling

机译:H + O_2上总角动量J> 0的时变量子力学计算II:关于科里奥利耦合的重要性

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The H + O_2 -> OH + O reaction has been studied for total angular momentum J>0 with a time-dependent wave packet method using the Coriolis coupled method of Goldfield and Gray [E. M. Goldfield and S. K. Gray, Comp. Phys. Commun. 98, 1 (1996)] on parallel computers. Helicity conserving (HC) and coupled channel (CC) calculations were performed for J = 1, J = 2, J = 5, and J = 10 using two different embeddings for the body fixed coordinate system to investigate the importance of Coriolis coupling for this reactive system. If the H-O_2 distance is taken to be the z axis of the coordinate system, we find poor agreement between the HC and the CC calculations for J>2. When the O_2 bond is taken to be the z axis, we find good agreement between the CC and HC calculations at low J. For higher J the agreement gets progressively worse, especially at higher energies. We can explain these results using a classical model from a previous paper on H + O_2 [A. J. H. M. Meijer and E. M. Goldfield, J. Chem. Phys. 108, 5404 (1998)].
机译:使用Goldfield和Gray的Coriolis耦合方法,采用时变波包方法研究了总角动量J> 0的H + O_2-> OH + O反应[E. M. Goldfield和S.K. Gray,比较物理公社98,1(1996)]在并行计算机上。使用身体固定坐标系的两个不同嵌入,针对J = 1,J = 2,J = 5和J = 10进行了螺旋度守恒(HC)和耦合通道(CC)计算,以研究科里奥利耦合对此的重要性反应系统。如果将H-O_2距离作为坐标系的z轴,则对于J> 2,我们发现HC和CC计算之间的一致性差。当O_2键作为z轴时,我们发现在低J时CC和HC计算之间存在良好的一致性。对于较高的J而言,一致性逐渐变差,尤其是在较高的能量下。我们可以使用以前关于H + O_2 [A. J. H. M. Meijer和E.M. Goldfield,J. Chem。物理108,5404(1998)]。

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