Duality Occurrences: Physical Origin of Wave Functions

L. Moukala
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引用次数: 1

Abstract

The quantum mystery began with the probabilistic interpretation of the wave function. However, this usefulness is definitive in Quantum Mechanics while the suspense continues. The present paper aims to investigate the origin of such a mystery. Hence, considering a relativistic charged particle in quantum vacuum, it appeared that: (i) from a classical association, this electromagnetismself-consistent derives from the usual wave function, which corresponds to the scalar nature in addition to the vector one. (ii) Such duplicity is only justifiable when the related gauge fields describe fermions, in accordance with the previous theory of duality field-matter. This occurrence then corresponds to the appearance of bosons at cell intersections in vacuum lattice, whatever is the field. (iii) From the related gauge couplings, the scalar function must have an unknown vector companion. Both appear as originating the related conservation laws on one side. On the other side, specific variations of the field front would explain their physical origin. (iv) Moreover, both define an original gauge field to which that of law conservation is sensible. (v) Due to definition validity in any reference system, their possible quantization should lead to that of scalar and vector fields of stationary states. At last, the results highlight the connection between waves and fields associable to any object, emphasizing the field unification framework.
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对偶现象:波函数的物理起源
量子之谜始于波函数的概率解释。然而,这种有用性在量子力学中是确定的,而悬念仍在继续。本文旨在探讨这一谜团的起源。因此,考虑量子真空中的相对论性带电粒子,似乎:(1)从经典关联中,这种电磁自洽性来源于通常的波函数,它除了对应矢量性质外,还对应标量性质。(ii)根据先前的对偶场-物质理论,只有当相关规范场描述费米子时,这种双重性才是合理的。这种现象对应于在真空晶格中,无论场是什么,在细胞交叉处的玻色子的出现。(iii)从相关的量规耦合来看,标量函数必须有一个未知的伴随向量。两者似乎都是在一边产生了相关的守恒定律。另一方面,磁场前沿的特定变化可以解释它们的物理起源。(iv)此外,两者都定义了一个原始规范域,对于该规范域,法律守恒是合理的。(v)由于定义在任何参照系中都是有效的,它们可能的量化应该导致稳态的标量场和矢量场的量化。最后,结果突出了波与可关联于任何对象的场之间的联系,强调了场的统一框架。
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