Perturbation Theory

P. Peebles
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Abstract

This chapter examines applications drawn from perturbation theory. The main topic in perturbation theory is the energy and spontaneous decay rate of the 21-cm hyperfine line in atomic hydrogen. Before there were electronic computers, people had quite an accurate theoretical understanding of the energy levels in helium and more complicated systems. The trick was (and is) to find approximation schemes that treat unimportant parts of a physical system in quite crude approximations while reducing the interesting parts to a problem simple enough that it is feasible to compute but yet detailed enough to yield accurate results. The approximation methods in the chapter deal with the effects of small changes in the Hamiltonian, resulting for example from the application of a static or time variable electric or magnetic field. This may cause small changes in energy levels, and it may induce transitions among eigenstates of the original Hamiltonian.
微扰理论
本章探讨从摄动理论中得出的应用。微扰理论的主要课题是氢原子21cm超细线的能量和自发衰变率。在电子计算机出现之前,人们对氦和更复杂的系统中的能级有相当准确的理论认识。诀窍是(现在也是)找到近似方案,以相当粗略的近似来处理物理系统中不重要的部分,同时将有趣的部分简化为一个足够简单的问题,可以计算,但又足够详细,可以产生准确的结果。本章中的近似方法处理哈密顿量的微小变化所产生的影响,例如由于施加静态或时变电场或磁场而产生的变化。这可能引起能级的微小变化,并可能引起原哈密顿量的本征态之间的跃迁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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