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Geometric constraints on the space of N $$ mathcal{N} $$ = 2 SCFTs. Part I: physical constraints on relevant deformations

机译:n $$ mathcal {n} $$ = 2 scfts的空间上的几何约束。第一部分:相关变形的物理限制

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摘要

Abstract We initiate a systematic study of four dimensional N $$ mathcal{N} $$ = 2 superconformal field theories (SCFTs) based on the analysis of their Coulomb branch geometries. Because these SCFTs are not uniquely characterized by their scale-invariant Coulomb branch geometries we also need information on their deformations. We construct all inequivalent such deformations preserving N $$ mathcal{N} $$ = 2 supersymmetry and additional physical consistency conditions in the rank 1 case. These not only include all the ones previously predicted by S-duality, but also 16 additional deformations satisfying all the known N $$ mathcal{N} $$ = 2 low energy consistency conditions. All but two of these additonal deformations have recently been identified with new rank 1 SCFTs; these identifications are briefly reviewed. Some novel ingredients which are important for this study include: a discussion of RG-flows in the presence of a moduli space of vacua; a classification of local N $$ mathcal{N} $$ = 2 supersymmetry-preserving deformations of unitary N $$ mathcal{N} $$ = 2 SCFTs; and an analysis of charge normalizations and the Dirac quantization condition on Coulomb branches. This paper is the first in a series of three. The second paper [1] gives the details of the explicit construction of the Coulomb branch geometries discussed here, while the third [2] discusses the computation of central charges of the associated SCFTs.
机译:摘要我们启动了对四维N $$ MATHCAL {n} $$ = 2超成形场理论(SCFTS)的系统研究,基于对其库仑分支几何形状的分析。由于这些SCFTs不是唯一特点是其规模不变库仑分支的几何形状,我们还需要对他们的变形信息。我们构建所有不平等性的这种变形,保留了n $$ mathcal {n} $$ = 2超对称和级别的额外物理一致性条件。这些不仅包括先前通过S-Duality预测的所有这些,而且还包括满足所有已知的n $$ Mathcal {n} $$ = 2低能量一致性条件的额外变形。除了新的等级1 SCFTS,最近还识别出这些附属变形中的两种。简要审查这些标识。对该研究很重要的一些新的成分包括:在存在于VACUA的模态空间存在下对RG流的讨论;本地n $$ mathcal {n}的分类$$ = 2超对称保留的单一N $$ Mathcal {n} $$ = 2 SCFTS;库仑分支对电荷训练的分析及帝林量化条件。本文是一系列三分之一的纸张。第二纸张[1]给出了这里讨论的库仑分支几何形状的显式结构的细节,而第三[2]讨论了相关SCFT的中央电荷的计算。

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