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Seiberg duality versus hidden local symmetry

机译:Seiberg对偶与隐藏局部对称

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It is widely believed that the emergent magnetic gauge symmetry of SQCD is analogous to a hidden local symmetry (HLS). We explore this idea in detail, deriving the entire (spontaneously broken) magnetic theory by applying the HLS formalism to spontaneously broken SU(N) SQCD. We deduce the Kähler potential in the HLS description, and show that gauge and flavour symmetry are smoothly restored along certain scaling directions in moduli space. We propose that it is these symmetry restoring directions, associated with the R-symmetry of the theory, that allow full Seiberg duality. Reconsidering the origin of the magnetic gauge bosons as the ρ-mesons of the electric theory, colour-flavour locking allows a simple determination of the parameter a. Its value continuously interpolates between a = 2 on the baryonic branch of moduli space — corresponding to “vector meson dominance” — and a = 1 on the mesonic branch. Both limiting values are consistent with previous results in the literature. The HLS formalism is further applied to SO and Sp groups, where the usual Seiberg duals are recovered, as well as adjoint SQCD. Finally we discuss some possible future applications, including (naturally) the unitarisation of composite W scattering, blended Higgs/technicolour models, real world QCD and non-supersymmetric dualities.
机译:人们普遍认为,SQCD的出现磁规范对称性类似于隐藏局部对称性(HLS)。我们将详细研究这一思想,通过将HLS形式主义应用于自发性破裂SU(N)SQCD来推导整个(自发性破裂)磁性理论。我们在HLS描述中推导了Kähler势,并表明在模量空间中沿特定缩放方向平滑地恢复了口感和风味对称性。我们认为正是这些对称恢复方向与理论的R对称性相关,才允许完全的Seiberg对偶性。重新考虑磁规范玻色子的起源作为电学理论的ρ介子,色香味锁定可以简单确定参数a。其值在模空间的重子分支上的a = 2(对应于“矢量介子优势”)和中子分支上的a = 1之间连续插值。这两个极限值与文献中的先前结果一致。 HLS形式主义进一步适用于SO和Sp组,其中恢复了常规的Seiberg对偶以及伴随的SQCD。最后,我们讨论了一些可能的未来应用,包括(自然地)复合W散射的统一,混合的希格斯/技术模型,真实世界的QCD和非超对称对偶。

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