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首页> 外文期刊>Progress of Theoretical Physics >Confinement and dynamical symmetry breaking in non-SUSY gauge theory from S-duality in string theory
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Confinement and dynamical symmetry breaking in non-SUSY gauge theory from S-duality in string theory

机译:非SUSY规范理论中弦理论中的S-对偶性的局限和动力对称性破缺

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摘要

We discuss an attempt to understand confinement and dynamical symmetry breaking in a 4-dimensional non-supersymmetric gauge theory using S-duality in type IIB string theory. The electric theory is a USp(2n) gauge theory and its magnetic dual is argued to be an SO(2n) or SO(2n-1) gauge theory. These theories are obtained as the low-energy effective theory of O3-D3? systems in type IIB string theory, which are related by S-duality. Confinement and dynamical symmetry breaking in the USp(2n) gauge theory are caused by the condensation of scalar fields in the magnetic dual description, which is consistent with the scenario of the dual Meissner mechanism for the confinement.
机译:我们讨论了一种尝试,以了解IIB型弦理论中使用S对偶的4维非超对称规范理论中的约束和动力对称破坏。电气理论是一种USp(2n)规范理论,其磁对偶被认为是SO(2n)或SO(2n-1)规范理论。这些理论是作为O3-D3的低能有效理论而获得的。 IIB型弦理论中的系统,与S-对偶性相关。 USp(2n)规范理论中的约束和动力对称破坏是由磁对偶描述中标量场的压缩引起的,这与对偶Meissner机制进行约束的情况是一致的。

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