首页> 外文期刊>The Journal of Chemical Physics >GENERAL METHOD FOR REMOVING RESONANCE SINGULARITIES IN QUANTUM MECHANICAL PERTURBATION THEORY
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GENERAL METHOD FOR REMOVING RESONANCE SINGULARITIES IN QUANTUM MECHANICAL PERTURBATION THEORY

机译:消除量子力学微扰理论中共振奇异性的一般方法

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This paper presents a way of improving second-order perturbation theory calculations by summing contributions of uncoupled excitations to infinite order. For problems involving molecular vibrations, the new theory is shown to give similar results to conventional second-order perturbation theory when the system treated has no near resonances but also to give accurate and stable results even very close to resonance. The new theory is tested by comparison to converged variational calculations for vibrational energy levels of formaldehyde, formaldehyde-d(2), and two two-dimensional model subsystems based on formaldehyde. (C) 1996 American Institute of Physics. [References: 24]
机译:本文提出了一种通过将未耦合激励对无限阶的贡献相加来改进二阶微扰理论计算的方法。对于涉及分子振动的问题,当所处理的系统没有近共振时,新理论显示出与常规二阶微扰理论相似的结果,甚至在非常接近共振的情况下也给出了准确而稳定的结果。通过与甲醛,甲醛-d(2)和基于甲醛的两个二维模型子系统的振动能级的收敛变分计算进行比较,对新理论进行了测试。 (C)1996年美国物理研究所。 [参考:24]

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