单光子量子化场

C. Meis
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引用次数: 4

摘要

我们提出了与实验证据一致的表达单个光子物理特性的理论发展。将电磁场矢量位幅的量子化增强为无腔光子态。将Schrödinger方程与相对论性无质量粒子哈密顿量耦合到对称的向量势关系中,建立了光子的向量势能方程,表达了单个光子的同时波粒性质,这是一种固有的物理性质。结果表明,矢量势可以自然地被认为是光子的实波函数,包含相干局域概率。我们直接推导出无腔单光子的电场和磁场振幅,发现它们与角频率的平方成正比。零能电磁场基态(EFGS)是一个量子真空实分量,是由麦克斯韦方程组和矢量势量子化过程自然产生的。光子矢量势的量子化振幅与电子-正电子电荷的关系直接显示了光子和电子-正电子之间的物理关系,这可能是它们相互转换的起源。很明显,光子和电子-正电子一样,都是从同一个量子真空场发出的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantized Field of Single Photons
We present theoretical developments expressing the physical characteristics of a single photon in conformity with the experimental evidence. The quantization of the electromagnetic field vector potential amplitude is enhanced to a free of cavity photon state. Coupling the Schrödinger equation with the relativistic massless particle Hamiltonian to a symmetrical vector potential relation, we establish the vector potential - energy equation for the photon expressing the simultaneous wave-particle nature of a single photon, an intrinsic physical property. It is shown that the vector potential can be naturally considered as a real wave function for the photon entailing a coherent localization probability. We deduce directly the electric and magnetic field amplitudes of the cavity-free single photon, which are revealed to be proportional to the square of the angular frequency. The zero-energy electromagnetic field ground state (EFGS), a quantum vacuum real component, issues naturally from Maxwell’s equations and the vector potential quantization procedure. The relation of the quantized amplitude of the photon vector potential to the electron-positron charge results directly showing the physical relationship between photons and electrons-positrons that might be at the origin of their mutual transformations. It becomes obvious that photons, as well as electrons-positrons, are issued from the same quantum vacuum field.
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