Non-Abelian Constructivist Lagrangian

J. Chauca, R. Doria
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Abstract

A whole Yang-Mills symmetry is proposed. A grouping physics is constituted. It consists in inserting a given Yang-Mills field Aaμ in a fields set {Aa μI } constituted by other fields families, I = 1, . . . , N. Each field becomes part of a whole. A set action physics happens preserving the Yang-Mills symmetry. However the usual properties of an isolated field are extended to antireductionist properties. An associative physics is formed. A Yang-Mills whole quantum system is constituted. A whole Yang-Mills physics isobtained. The quantum corresponding to a specific Aa μI field inserted in a whole develops features depending on thefields set {Aa μI } associativity. Properties established from a so-called constructivist gauge theory are identified. Usual YM interactions are enlarged to YM interrelationships. Classical equations are studied under set action. A Yang-Mills whole unity is constituted by a constructivist Lagrangian. The reductionist approach substituted by constructivism. Physics under set transformations. A cause and effect relationship is expressed based on whole unity. The whole is that moves to future. Minimal action principle, Noether theorem, Bianchi identities are derived. A fields set with diversity, interdependence, nonlinearity, chance is expressed.
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非阿贝尔构成主义拉格朗日
提出了一个完整的杨-米尔斯对称。形成一个分组物理。它包括在一个由其他域族组成的域集{Aa μI}中插入一个给定的Yang-Mills域a_1, I = 1,…每个领域都成为整体的一部分。一种固定作用物理是在保持杨-米尔斯对称的情况下发生的。然而,孤立场的通常性质被推广到反还原论性质。形成了一种联想物理。建立了一个杨-米尔斯全量子系统。得到了一整套杨-米尔斯物理学。插入到整体中的特定Aa μI场对应的量子根据场集{Aa μI}的结合性发展出特征。从所谓的建构主义规范理论建立的属性被识别。通常的YM相互作用被扩大为YM相互关系。在固定作用下研究经典方程。一个杨-米尔斯整体统一体是由建构主义的拉格朗日量构成的。由建构主义取代的还原论方法。集合变换下的物理。因果关系是建立在整体统一的基础上的。整体是移动到未来。最小作用原理,诺特定理,Bianchi恒等式的推导。表达了一个具有多样性、相互依赖性、非线性、偶然性的场集。
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