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Whole Gauge Physicality

机译:整体仪表物理

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摘要

Considering that nature also has a systemic behaviour, there is still space for a whole physics to be derived from gauge symmetry. Therefore, by observing such nature systemic behaviour, a systemic symmetry is introduced. It originates the so-called whole gauge theory. It is a model based on the meaning that to a given Lorentz group representation should be associated with a field family. So, given the representation {□(1/2),□(1/2)}, it provides a dynamics with N-potential fields rotating under a same symmetry group. It develops a new possibility for gauge invariance to be explored which is to work as building maker of a group of fields.Thus, given that nature work as a group, one moves from the usual physics given by just one field G_μ to a physics where this field is inserted in a group 〖{G〗_μ^I}. New properties are developed. At this work, one studies on such new features which are the fields non-linearity, granular and collective, connectivity, global interactivity, directive and circumstance, gauge organization, complexity.Our framework for this investigation is the abelian fields set {G_μ^I}. By analyzing the corresponding gauge invariant Lagrangian these new properties are deducted. They are showing a new physicality for the quanta. They are consequence from the parts to be enfolded in the whole given by the Lorentz group representation.
机译:考虑到自然界也具有系统性,因此从规范对称性衍生出整个物理学仍有空间。因此,通过观察这种自然的系统行为,引入了系统对称性。它起源于所谓的整体规范理论。该模型基于以下含义:给定的洛伦兹组表示应与字段族关联。因此,给定表示形式{□(1/2),□(1/2)},它提供了一个动力学,其中N个势场在相同的对称组下旋转。它为规范的不变性开辟了一种新的可能性,即可以作为一组场的建筑制造者工作。因此,考虑到自然是一个整体,一个人从仅由一个场G_μ给出的普通物理学转移到其中该字段插入到〖{G}_μ^ I}组中。开发了新的属性。在这项工作中,我们对非线性,粒状和集体,连通性,全局交互性,指令和情况,量表组织,复杂性等领域进行了研究。我们的研究框架是阿贝尔场集{G_μ^ I }。通过分析相应的规范不变拉格朗日法,可以推导出这些新属性。它们显示了量子的新物理性。它们是洛伦兹集团代表给出的全部要折叠的部分的结果。

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