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On the compatibility of the H-particle with the Standard Model

机译:H粒子与标准模型的相容性

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In addition to the scalar properties of the potential field of a quark as previously proposed, vector properties are added. It is shown that this results into a field description for the nuclear force (i.e., weak and strong interactions) similar to the Maxwellian description of the electromagnetic field. The description appears to be compatible with the U(1) x SU(2) x SU(3) Lie-group description of the Standard Model, without requiring the existence of the Higgs boson. This is concluded after challenging the canonic (Yang Mills) derivation of gauge invariance from the phase invariance of the spinor wave function. Furthermore, it is shown that the remnant field of nucleons, which is usually interpreted as a van der Waals look-alike of the color force, can be straightforwardly calculated as the resultant of the nuclear force potential fields from the three quarks within the nucleon. All this turns the threefold hierarchy of the Standard Model from different physical forces (i.e., electromagnetic force, weak interaction, and color force) into a hierarchy for the weak force in singlets, doublets, and triplets.
机译:除了先前提出的夸克势场的标量特性外,还添加了矢量特性。结果表明,这导致了对核力的场描述(即弱相互作用和强相互作用),类似于电磁场的麦克斯韦描述。该描述似乎与标准模型的U(1)x SU(2)x SU(3)Lie-group描述兼容,而不需要存在希格斯玻色子。在对自旋波函数的相位不变性对规范不变性进行经典(Yang Mills)推导后得出结论。此外,已经表明,可以直接计算出核子的残余场,通常将其理解为色力的范德华式外观,将其作为由核子内三个夸克产生的核力势场的总和。所有这些将标准模型的三重层次结构从不同的物理力(即电磁力,弱相互作用和色力)转变为单线态,双峰态和三重态的弱力层次。

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