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Challenging Photon Mass: from Scalar Quantum Electrodynamics to String Theory

机译:挑战光子质量:从标量量子电动力学到弦论

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A massless photon, originated already through the Maxwell theory of electromagnetism, is one of the basic paradigms of modern physics, ideally supported throughout both the quantum electrodynamics and the Higgs mechanism of spontaneous symmetry breaking which lays the foundations of the Standard Model of elementary particles and fundamental interactions. Nevertheless, the physical interpretation of the optical experimental data, such like observations of total internal reflection of the beam shift in the Goos–H¨anchen effect, concludes a photon mass. Is, therefore, light diversified onto two independent species - gauge photons and optical photons? Can such a state of affairs be consistently described through a unique theoretical model? In this paper, two models of a photon mass, arising from the scalar quantum electrodynamics with the Higgs potential, are discussed. The first scenario leads to a neutral scalar mass estimable throughout the experimental limits on a photon mass. In the modified mechanism, a neutral scalar mass in not affected throughout a photon mass and is determinable through the experimental data, while a massless dilaton is present and a non-kinetic massive vector field effectively results in the string theory of non-interacting invariant both a free photon and a neutral scalar, and the Aharonov–Bohm effect is considered. The Markov hypothesis on maximality of the Planck mass is applied.
机译:无质量的光子已经通过麦克斯韦电磁理论产生,是现代物理学的基本范例之一,在量子电动力学和自发对称破坏的希格斯机制中都得到了理想的支持,奠定了基本粒子和原子的标准模型的基础。基本互动。尽管如此,对光学实验数据的物理解释,例如在Goos-Hanchen效应中观察到光束移动的全内反射,可以得出一个光子质量。因此,光是否被分散到两个独立的物种上-标距光子和光学光子?是否可以通过独特的理论模型来一致地描述这种状况?在本文中,讨论了由具有希格斯势能的标量量子电动力学产生的两个光子质量模型。第一种情况导致在整个光子质量实验极限范围内可估计中性标量质量。在改进的机制中,中性标量质量不会在整个光子质量中受到影响,并且可以通过实验数据确定,而存在无质量的膨胀子,并且非运动质量矢量场有效地导致了非相互作用不变性的弦论一个自由的光子和一个中性的标量,并考虑了Aharonov–Bohm效应。应用了普朗克质量最大值的马尔可夫假设。

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