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Extended gauge theories in Euclidean space with higher spin fields

机译:具有更高自旋场的欧几里德空间中的扩展规范理论

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The extended Yang-Mills gauge theory in Euclidean space is a renormalizable (by power counting) gauge theory describing a local interacting theory of scalar, vector, and tensor gauge fields (with maximum spin 2). In this article we study the quantum aspects and various generalizations of this model in Euclidean space. In particular, the quantization of the pure gauge model in a. common class of covariant gauges is performed. We generalize the pure gauge sector by including matter fermions in the adjoint representation of the gauge group and analyze its N = 1 and N = 2 supersymmetric extensions. We show that the maximum half-integer spin contained in these fermion fields in dimension 4 is 3/2. Moreover, we develop an extension of this theory which will include internal gauge symmetries and the coupling to bosonic matter fields. The spontaneous symmetry breaking of the extended gauge symmetry is also analyzed. (C) 2001 Academic Press. [References: 64]
机译:欧几里得空间中扩展的Yang-Mills规范理论是一种可重整化(通过幂计数)的规范理论,描述了标量,矢量和张量规范场(最大自旋2)的局部相互作用理论。在本文中,我们研究了该模型在欧几里得空间中的量子方面和各种推广。特别是,a中的纯规范模型的量化。执行协变规的常见类别。我们通过在量规组的伴随表示中包括物质费米子来推广纯量规扇区,并分析其N = 1和N = 2超对称扩展。我们证明了在尺寸4的这些费米子场中包含的最大半整数自旋为3/2。此外,我们发展了这一理论的扩展,它将包括内部规范的对称性和与波场物质场的耦合。还分析了扩展规范对称性的自发对称性破坏。 (C)2001学术出版社。 [参考:64]

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