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Derivation of spontaneously broken gauge symmetry from the consistency of effective field theory I: Massive vector bosons coupled to a scalar field

机译:从有效场理论的一致性推导自发破裂的规范对称性I:耦合标量场的大量矢量玻色子

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We revisit the problem of deriving local gauge invariance with spontaneous symmetry breaking in the context of an effective field theory. Previous derivations were based on the condition of tree-order unitarity. However, the modern point of view considers the Standard Model as the leading order approximation to an effective field theory. As tree-order unitarity is in any case violated by higher-order terms in an effective field theory, it is instructive to investigate a formalism which can be also applied to analyze higher-order interactions. In the current work we consider an effective field theory of massive vector bosons interacting with a massive scalar field. We impose the conditions of generating the right number of constraints for systems with spin-one particles and perturbative renormalizability as well as the separation of scales at one-loop order. We find that the above conditions impose severe restrictions on the coupling constants of the interaction terms. Except for the strengths of the self-interactions of the scalar field, that can not be determined at this order from the analysis of three- and four-point functions, we recover the gauge-invariant Lagrangian with spontaneous symmetry breaking taken in the unitary gauge as the leading order approximation to an effective field theory. We also outline the additional work that is required to finish this program.
机译:在有效场论的背景下,我们重新讨论了自发对称性破坏导致局部规范不变的问题。先前的推导是基于树序统一性的条件。但是,现代观点认为标准模型是有效场论的前导近似。在有效的场论中,高阶术语在任何情况下都违反树阶统一性,因此研究形式主义也很有帮助,该形式主义也可用于分析高阶相互作用。在当前的工作中,我们考虑了有效矢量玻色子与大标量场相互作用的有效场论。我们强加了为带有自旋粒子和扰动可重归一化的系统生成正确数量的约束的条件,以及按单环顺序分离尺度的条件。我们发现上述条件对相互作用项的耦合常数施加了严格的限制。除了标量场自相互作用的强度(无法通过三点和四点函数的分析以此顺序确定)之外,我们恢复了单位规中采用自发对称破坏的规不变拉格朗日作为有效场论的前导近似。我们还将概述完成此程序所需的其他工作。

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