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An introduction to atomic spectroscopy: II - the sodium spectrum

机译:原子光谱学简介:II-钠光谱

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摘要

The present article is devoted to Chemistry or Physics undergraduate students, given their difficulty to understand fundamental concepts and technical language used in atomic spectroscopy and quantum mechanics. An easy approach is shown in the treatment of the emission spectrum of the sodium atom without any involved calculations. In a previous article, the hydrogen spectrum was considered and the energy degeneracy of the angular momentum quantum number was observed. For the sodium spectrum, due to the valence electron penetration into internal shells, a breakdown of this degeneracy occurs and a dependence of this penetration on the angular momentum quantum number is observed. The eigenvalues are determined introducing the quantum defect correction (Rydberg correction) in the denominator of the Balmer equation, and the energy diagram is obtained. The intensity ratio for the observed doublets is explained by introducing new wave functions, containing the magnetic quantum number of the total angular momentum.
机译:本文针对的是化学或物理专业的本科生,因为他们难以理解原子光谱学和量子力学中使用的基本概念和技术语言。在处理钠原子的发射光谱时显示了一种简单的方法,无需进行任何计算。在上一篇文章中,考虑了氢光谱并观察到了角动量量子数的能量简并。对于钠光谱,由于价电子渗透到内壳中,发生这种简并的分解,并且观察到该渗透对角动量量子数的依赖性。通过在巴尔默方程的分母中引入量子缺陷校正(里德伯格校正)来确定特征值,并获得能量图。通过引入新的波函数来解释所观察到的双峰的强度比,其中包含了总角动量的磁量子数。

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