About Non-relativistic Quantum Mechanics and Electromagnetism

Ladislaus Alexander B'anyai, M. Bundaru
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Abstract

We describe here the coherent formulation of electromagnetism in the non-relativistic quantum-mechanical many-body theory of interacting charged particles. We use the mathematical frame of the field theory and its quantization in the spirit of the quantum electrodynamics (QED). This is necessary because a manifold of misinterpretations emerged especially regarding the magnetic field and gauge invariance. The situation was determined by the historical development of quantum mechanics, starting from the Schrödinger equation of a single particle in the presence of given electromagnetic fields, followed by the many-body theories of many charged identical particles having just Coulomb interactions. Our approach to the non-relativistic QED emphasizes the role of the gauge-invariance and of the external fields. We develop further the approximation of this theory allowing a closed description of the interacting charged particles without photons. The resulting Hamiltonian coincides with the quantized version of the Darwin Hamiltonian containing besides the Coulomb also a current-current diamagnetic interaction. We show on some examples the importance of this extension of the many-body theory.
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关于非相对论性量子力学和电磁学
我们在这里描述了非相对论性量子力学带电粒子相互作用多体理论中电磁学的相干公式。我们在量子电动力学(QED)的精神中使用场论的数学框架及其量子化。这是必要的,因为出现了许多误解,特别是关于磁场和规范不变性。这种情况是由量子力学的历史发展决定的,从给定电磁场中单个粒子的Schrödinger方程开始,然后是具有库仑相互作用的许多带电相同粒子的多体理论。我们研究非相对论性QED的方法强调了规范不变性和外场的作用。我们进一步发展了这一理论的近似,允许对没有光子的相互作用的带电粒子的封闭描述。由此得到的哈密顿量与达尔文哈密顿量的量子化版本一致,除了库仑外,还包含电流-电流反磁相互作用。我们用一些例子来说明多体理论的这种扩展的重要性。
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