四玻色子电磁守恒定律

R. Doria, I. Soares
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引用次数: 5

摘要

电磁学由两个基本假设来表示。它们是光不变性和电荷守恒。在这项工作中,通过跟踪基本粒子的电荷微观行为,将麦克斯韦情景从宏观扩展到微观电磁学。它产生了一个三重电荷的相互关系。三个电荷{+,0,−}通过一个矢量玻色子四重态交换。它被称为四玻色子电磁学。一个系统的电磁物理似乎被理解了。麦克斯韦光子不足以描述微观电荷物理。得到了电磁能的推广。四重态场{Aµ,Uµ,Vµ±}是电磁能量的搬运工。它们是普通光子Aµ,质量光子Uµ和两个带电光子Vµ±,必须考虑对EM现象的新认识。提出了一种基于颗粒场和集体场的集合决定论。与整体相关的时空演化。研究守恒定律。电磁现象被放大为三个电荷交换为{+,0,−}。出现了两个新奇的现象。非线性场作为自源和电荷物理的新特征。性质,如守恒,传导,传输,相互作用被扩展到一个系统电磁学。一个完整的电荷守恒定律是由三个相互交织的电荷产生的。电荷具有系统行为。虽然没有零电荷的库仑定律,但四玻色子电磁学包含一个提供中性电磁学的EM能量。带零电荷{Aµ,Uµ}的粒子携带EM能。另一个考虑是电磁能量由四个非线性场传递。一种新的物质形态出现了。阿贝尔非线性产生场和电荷。场通过质量项,三线性和四线性相互作用,自旋耦合,作为自己的源。因此光子不仅仅是电荷振荡的结果。它能够产生自己的电荷。介绍光子学的含义。因此,电荷不再是孤立的电磁源。还有另一个守恒定律。场源通过相应的运动方程、比安奇恒等式、能量动量、诺特定律和角动量守恒定律出现。它们将电磁场移动到电场的电荷依赖上。它们和电荷一起携带着电磁通量。支持势场作为原始实体的Ahranov-Bohm实验。
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Four Bosons EM Conservation Laws
Electromagnetism is expressed from two basic postulates. They are light invarianceand charge conservation. At this work one extends the Maxwell scenario from macroscopic to microscopic electromagnetism by following the elementary particles electric charge microscopic behavior. It yields a triune electric charge interrelationship. Three charges {+, 0, −} be exchanged through a vector bosons quadruplet. It is called Four Bosons Electromagnetism. A systemic EM physics appears to be understood. Maxwell photon is not enough for describing the microscopic electric charge physics. An extension for  electromagnetic energy is obtained. The fields quadruplet {Aµ, Uµ, Vµ±} are the porters of electromagnetic energy. They are the usual photon Aµ, massive photon Uµ and two charged photons Vµ±, A new understanding on EM phenomena has to be considered. A set determinism based on granular and collective fields is developed. A space-time evolution associated to a whole.Conservation laws are studied. The EM phenomena is enlarged to three charges interchanges to {+, 0, −}. Two novelties appear. New features on nonlinear fields acting as own sources and on electric charge physics. Properties as conservation, conduction, transmission, interaction are extended to a systemic electromagnetism. A whole conservation law for electric charge emerges from three charges interwoven. Electric charge has a systemic behavior. Although there is no Coulomb law for zero electric charge, the Four Bosons Electromagnetism contains an EM energy which provides a neutral electromagnetism. Particles with zero charge {Aµ, Uµ} are carrying EM energy. Another consideration is on EM energy being transported by four nonlinear fields. A new physicality appears. The abelian nonlinearity generates fields charges. Fields are working as own sources through mass terms, trilinear and quadrilinear interactions, spin couplings. Consequently the photon is more than being a consequence from electric charge oscillations. It is able to generate its own charge. Introduce the meaning of photonics.Thus, electric charge is no more the isolate electromagnetic source. There are another conservation laws. Fields sources appear through corresponding equations of motion, Bianchi identities, energy-momentum, Noether laws and angular momentum conservation laws. They move EM to a fields charges dependence. Together with electric charge they carrythe electromagnetic flux. Supporting the Ahranov-Bohm experiment of potential fields as primitive entities.
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