On matrix elements of the vector physical quantities

IF 1.5 4区 物理与天体物理 Q3 OPTICS The European Physical Journal D Pub Date : 2025-02-14 DOI:10.1140/epjd/s10053-025-00966-3
Alexei M. Frolov
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Abstract

Methods of angular momenta are modified and used to solve some actual problems in quantum mechanics. In particular, we re-derive some known formulas for analytical and numerical calculations of matrix elements of the vector physical quantities. These formulas are applied to a large number of quantum systems which have an explicit spherical symmetry. Multiple commutators of different powers of the angular momenta \({\hat{\textbf{J}}}^{2}\) and vector-operator \({\hat{\textbf{A}}}\) are determined in the general form. Calculations of the expectation values averaged over orbital angular momenta are also described in detail. This effective and elegant old technique, which was successfully used by Enrico Fermi and Aage Bohr, is almost forgotten in modern times. We also discuss quantum systems with additional relations (or constraints) between some vector-operators and orbital angular momentum. For similar systems such relations allow one to obtain some valuable additional information about their properties, including the bound state spectra, correct asymptotics of actual wave functions, etc. As an example of unsolved problems we consider applications of the algebras of angular momenta to investigation of the one-electron, two-center (Coulomb) problem \((Q_1, Q_2)\). For this problem it is possible to obtain the closed analytical solutions which are written as the ‘correct’ linear combinations of products of the two one-electron wave functions of the hydrogen-like ions with the nuclear charges \(Q_1 + Q_2\) and \(Q_1 - Q_2\), respectively. However, in contrast with the usual hydrogen-like ions such hydrogenic wave functions must be constructed in three-dimensional pseudo-Euclidean space with the metric (\(-1,-1,1\)).

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关于向量物理量的矩阵元素
对角动量方法进行了改进,并用于解决量子力学中的一些实际问题。特别地,我们重新推导了矢量物理量的矩阵元素的解析和数值计算的一些已知公式。这些公式应用于大量具有显式球对称的量子系统。以一般形式确定了角动量\({\hat{\textbf{J}}}^{2}\)和矢量算子\({\hat{\textbf{A}}}\)的不同幂的多个换向子。对轨道角动量平均期望值的计算也作了详细的描述。这种有效而优雅的古老技术,曾被恩里科·费米和阿格·玻尔成功地使用过,但在现代几乎被遗忘了。我们还讨论了一些矢量算符和轨道角动量之间具有附加关系(或约束)的量子系统。对于类似的系统,这种关系允许人们获得有关其性质的一些有价值的附加信息,包括束缚态谱,实际波函数的正确渐近等。作为未解决问题的一个例子,我们考虑了角动量代数在研究单电子,双中心(库仑)问题\((Q_1, Q_2)\)中的应用。对于这个问题,有可能得到封闭的解析解,它们分别写成带核电荷\(Q_1 + Q_2\)和\(Q_1 - Q_2\)的类氢离子的两个单电子波函数乘积的“正确”线性组合。然而,与通常的类氢离子不同,这种氢波函数必须在三维伪欧几里得空间中与度规(\(-1,-1,1\))构造。
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来源期刊
The European Physical Journal D
The European Physical Journal D 物理-物理:原子、分子和化学物理
CiteScore
3.10
自引率
11.10%
发文量
213
审稿时长
3 months
期刊介绍: The European Physical Journal D (EPJ D) presents new and original research results in: Atomic Physics; Molecular Physics and Chemical Physics; Atomic and Molecular Collisions; Clusters and Nanostructures; Plasma Physics; Laser Cooling and Quantum Gas; Nonlinear Dynamics; Optical Physics; Quantum Optics and Quantum Information; Ultraintense and Ultrashort Laser Fields. The range of topics covered in these areas is extensive, from Molecular Interaction and Reactivity to Spectroscopy and Thermodynamics of Clusters, from Atomic Optics to Bose-Einstein Condensation to Femtochemistry.
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