碱金属原子的Kuryshkin-Wodkiewicz量子测量模型

A. Zorin
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引用次数: 1

摘要

Kuryshkin-Wodkiewicz量子测量模型的构造形式是早期为量子开普勒问题详细开发的。对于更复杂的量子物体来说,这样的结构是未知的。同时,Holevo-Helstrom量子测量的标准(非构造性)模型适用于任何量子物体。在这项工作中,量子测量的构造模型被推广到更广泛的一类量子物体,即具有一价电子的原子和离子的光谱。该分析基于根据Klechkovsky Madelong规则对原子中电子的能量排序的实验数据,以及用于描述碱金属原子中光学电子能谱的单粒子势模型的证实。以氢原子中的电子的电势与碱金属原子表示中的核的特定有效态的Wigner函数的卷积形式的单粒子电势的扰动的表示允许将碱金属的所有计算算法简化为氢原子的相应算法。
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Kuryshkin-Wodkiewicz quantum measurement model for alkaline metal atoms
The constructive form of the Kuryshkin-Wodkiewicz model of quantum measurements was earlier developed in detail for the quantum Kepler problem. For more complex quantum objects, such a construction is unknown. At the same time, the standard (non-constructive) model of Holevo-Helstrom quantum measurements is suitable for any quantum object. In this work, the constructive model of quantum measurements is generalized to a wider class of quantum objects, i.e., the optical spectrum of atoms and ions with one valence electron. The analysis is based on experimental data on the energy ordering of electrons in an atom according to the Klechkovsky-Madelung rule and on the substantiation of a single-particle potential model for describing the energy spectrum of optical electrons in alkali metal atoms. A representation of the perturbation of a single-particle potential in the form of a convolution of the potential of an electron in a hydrogen atom with the Wigner function of a certain effective state of the core in an alkali metal atom representation allows reducing all calculation algorithms for alkali metals to the corresponding algorithms for the hydrogen atom.
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来源期刊
CiteScore
0.60
自引率
0.00%
发文量
20
审稿时长
10 weeks
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