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转动-振动状态的量子计算:方法与DOCl应用结果

Quantum calculation of ro-vibrational states: methodology and DOCl application results.

作者信息

Zhang Hong, Hankel Marlies, Smith Sean C, Nanbu Shinkoh, Nakamura Hiroki

机构信息

Centre for Computational Molecular Science, AIBN Building (#75), The University of Queensland, Qld 4072, Brisbane, Australia.

出版信息

J Phys Chem A. 2008 May 1;112(17):4141-7. doi: 10.1021/jp8000114. Epub 2008 Mar 27.

Abstract

An improved Lanczos eigenvalue analysis method has been developed to compute the bound ro-vibrational states for the DOCl system at a total angular momentum of J = 0 and J = 30. In this method, the error norm is used to identify all the true eigenvalues, using the Lanczos algorithm without re-orthogonalization. For ro-vibrational spectroscopy calculations, the comparisons among experimental results, the exact quantum mechanical calculations, and the widely used approximate adiabatic rotation method have been made for J = 30. For J = 0, the density of states (DOS) in both the bound and unimolecular dissociation regime have been computed, whereas for the J = 30 case, only the DOS in the lower portion of the bound spectrum has been reported, because of substantial computational tasks.

摘要

一种改进的 Lanczos 特征值分析方法已被开发出来,用于计算总角动量 J = 0 和 J = 30 时 DOCl 系统的束缚转动 - 振动状态。在该方法中,使用误差范数来识别所有真实特征值,采用无重正交化的 Lanczos 算法。对于转动 - 振动光谱计算,已针对 J = 30 对实验结果、精确的量子力学计算以及广泛使用的近似绝热转动方法进行了比较。对于 J = 0,已计算了束缚态和单分子解离区域的态密度(DOS),而对于 J = 30 的情况,由于大量的计算任务,仅报告了束缚谱较低部分的 DOS。

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