多极量子光学中的规范和酉变换。

IF 4.3 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Mohamed Babiker
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引用次数: 0

摘要

多极量子光学研究的是光与物质的相互作用,它是带电粒子的多体束缚系统,与电磁场的耦合是多极电极化和磁化。我们描述了应用于常规非相对论形式的两种变换,即直接应用于拉格朗日阶段的规范变换和应用于旧哈密顿量的幺正变换。我们展示了这种转换如何导致一个整体电中性多体束缚电荷系统的量子电动力学(QED)的相同Power-Zienau-Woolley (PZW)公式,包括内部运动以及质量中心的总动力学。除了强调多极形式论作为处理原子和分子物理中的光学过程的可靠和方便的平台的效用外,还显示了分析如何也可以导致识别由磁场中电偶极矩的总运动引起的Röntgen效应和由磁场中磁偶极矩的运动引起的Aharonov-Casher效应。在实验和理论两方面都指出了这两种效应的重要性。这篇文章是主题“光的量子理论”的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gauge and unitary transformations in multipolar quantum optics.

Multipolar quantum optics deals with the interaction of light with matter as a many-body bound system of charged particles where the coupling to electromagnetic fields is in terms of the multipolar electric polarization and magnetization. We describe two transformations applied to the conventional non-relativistic formalism, namely a gauge transformation applied directly to the fields at the Lagrangian stage and a unitary transformation applied to the old Hamiltonian. We show how such transformations lead to the same Power-Zienau-Woolley (PZW) formulation of the quantum electrodynamics (QED) of an overall electrically neutral many-body bound system of charges, including the internal motion as well as the gross dynamics of the centre of mass. Besides highlighting the utility of the multipolar formalism as a reliable and convenient platform in dealing with optical processes in atomic and molecular physics, it is shown how the analysis can also lead to the identification of the Röntgen effect arising from the gross motion of an electric dipole moment in a magnetic field and the Aharonov-Casher effect due to the motion of a magnetic dipole moment in an electric field. The importance of the two effects is pointed out in both experimental and theoretical contexts.This article is part of the theme issue 'The quantum theory of light'.

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来源期刊
CiteScore
9.30
自引率
2.00%
发文量
367
审稿时长
3 months
期刊介绍: Continuing its long history of influential scientific publishing, Philosophical Transactions A publishes high-quality theme issues on topics of current importance and general interest within the physical, mathematical and engineering sciences, guest-edited by leading authorities and comprising new research, reviews and opinions from prominent researchers.
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