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Seong, Rak-Kyeong
Mathematical Physics and AI Lab
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Combinatorial and algebraic mutations of toric Fano 3-folds and mass deformations of 2⁒𝑑⁑(0,2) quiver gauge theories

Author(s)
Kho, MinsungGhim, DongwookSeong, Rak-Kyeong
Issued Date
2024-10
DOI
10.1103/PhysRevD.110.086001
URI
https://scholarworks.unist.ac.kr/handle/201301/83951
Fulltext
https://link.aps.org/doi/10.1103/PhysRevD.110.086001
Citation
PHYSICAL REVIEW D, v.110, no.8, pp.086001
Abstract
We argue that algebraic and combinatorial polytope mutations of Fano 3-folds can be identified with mass deformations of associated 2⁒𝑑 (0,2) supersymmetric gauge theories realized by brane brick models. These are type IIA brane configurations that realize a large family of 2⁒𝑑 worldvolume theories on probe D1-branes at toric Calabi-Yau 4-folds. We show that brane brick models that are related by mass deformations associated to algebraic and combinatorial polytope mutations of Fano 3-folds have mesonic moduli spaces with the same number of generators. We show that mesonic flavor charges of these generators form convex reflexive lattice polytopes that are dual to the toric diagrams of the Fano 3-folds. The generating function of mesonic gauge invariant operators, also known as the Hilbert series of the mesonic moduli space, appears to be identical for such brane brick models under a particular refinement originating from the π‘ˆβ’(1)𝑅 charges in the brane brick model following the mass deformation.
Publisher
AMER PHYSICAL SOC
ISSN
2470-0010
Keyword
COUNTING BPS OPERATORSCHIRAL RING

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