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VIBRATIONAL ENERGY TRANSFER IN LINEAR HYDROCARBON CHAINS - NEW QUANTUM RESULTS

机译:线性油气链中的振动能量转移-新的量子结果

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In this paper we report quantum calculations of the survival probability in linear hydrocarbon chains. We have performed both adiabatic gauge transform calculations and calculations that include corrections beyond the adiabatic approximation. We have managed to perform intermediate steps of the calculations analytically. We require the initial basis set expansion and final summations to be performed numerically. The corrections beyond the adiabatic approximation are shown to be small for this system for multiple time step calculations and large for single time step calculations. We have proved an identity that allows the extension of the calculations for HC2 to longer chains at little computational cost. In particular, we have proved that the quantum solution for any linear hydrocarbon chain can be obtained from the solution of a problem with 3 degrees of freedom. We have performed multi-step adiabatic calculations for HC2 and HC6 that converge at up to 35-40 fs. We have devised a simple diagrammatic scheme that summarizes our method in a very compact form, Finally, we propose an alternative strategy of calculation that might lead to very fast solutions of the quantum dynamics of this system. (C) 1995 American Institute of Physics. [References: 15]
机译:在本文中,我们报告了线性烃链中生存概率的量子计算。我们既进行了绝热量规变换计算,又进行了包括绝热近似之外的校正在内的计算。我们已经设法通过分析来执行计算的中间步骤。我们要求初始基集扩展和最终求和必须以数字方式执行。对于该系统,对于多个时间步长计算,除绝热近似值之外的校正量较小,而对于单个时间步长计算的校正量较大。我们已经证明了一种身份,可以以很少的计算成本将HC2的计算扩展到更长的链。特别地,我们已经证明,可以从具有3个自由度的问题的解中获得任何线性烃链的量子解。我们对HC2和HC6进行了多步绝热计算,收敛速度高达35-40 fs。我们设计了一个简单的图解方案,以非常紧凑的形式总结了我们的方法。最后,我们提出了一种替代的计算策略,该策略可能导致该系统量子动力学的非常快速的求解。 (C)1995年美国物理研究所。 [参考:15]

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