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Graded quivers and B-branes at Calabi-Yau singularities

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In this paper, it was shown that for any m, the open string sector of the topological B-model on Xm+2 can be described in terms of a graded quiver with superpotential.
Abstract
A graded quiver with superpotential is a quiver whose arrows are assigned degrees c ∈ {0, 1, ⋯ , m}, for some integer m ≥ 0, with relations generated by a superpotential of degree m − 1. Ordinary quivers (m = 1) often describe the open string sector of D-brane systems; in particular, they capture the physics of D3-branes at local Calabi-Yau (CY) 3-fold singularities in type IIB string theory, in the guise of 4d $$ \mathcal{N} $$ = 1 supersymmetric quiver gauge theories. It was pointed out recently that graded quivers with m = 2 and m=3 similarly describe systems of D-branes at CY 4-fold and 5-fold singularities, as 2d $$ \mathcal{N} $$ = (0, 2) and 0d $$ \mathcal{N} $$ = 1 gauge theories, respectively. In this work, we further explore the correspondence between m-graded quivers with superpotential, Q(m), and CY (m + 2)-fold singularities, Xm+2. For any m, the open string sector of the topological B-model on Xm+2 can be described in terms of a graded quiver. We illustrate this correspondence explicitly with a few infinite families of toric singularities indexed by m ∈ ℕ, for which we derive “toric” graded quivers associated to the geometry, using several complementary perspectives. Many interesting aspects of supersymmetric quiver gauge theories can be formally extended to any m; for instance, for one family of singularities, dubbed C(Y1,0(ℙm)), that generalizes the conifold singularity to m > 1, we point out the existence of a formal “duality cascade” for the corresponding graded quivers.

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On 5d SCFTs and their BPS quivers. Part I: B-branes and brane tilings

TL;DR: In this paper, the spectrum of BPS particles on the Coulomb branch of five-dimensional superconformal field theories (5d SCFTs) compactified on a circle is studied.
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TL;DR: In this article, the authors introduced m-dimers, which fully encode the m-graded quivers and their superpotentials, in the case in which the CY (m + 2)-folds are toric.
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Graded Quivers, Generalized Dimer Models and Toric Geometry

TL;DR: In this paper, the authors introduced a generalization of the concept of perfect matching to arbitrary $m$ and introduced a simplified algorithm for the computation of perfect matchings, which generalizes the Kasteleyn matrix approach to any $m$.
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On the Classification of Duality Webs for Graded Quivers

TL;DR: In this article, the authors studied how monodromies give rise to mutation invariants, which in turn can be formulated as Diophantine equations characterizing the space of dual theories associated to a given geometry.
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Calabi-Yau Products: Graded Quivers for General Toric Calabi-Yaus

TL;DR: In this article, the Calabi-Yau product (CY$m+n+3) algorithm was introduced for the determination of quiver theories for geometries that were previously out of practical reach.
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Supergravity and a confining gauge theory: duality cascades and χSB-resolution of naked singularities

TL;DR: In this article, a non-singular pure-supergravity background dual to the field theory on all scales, with small curvature everywhere if the ‘t Hooft coupling gsM is large, was proposed.
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Phases of N = 2 theories in two dimensions

TL;DR: In this paper, a natural relation between sigma models based on Calabi-Yau hypersurfaces in weighted projective spaces and Landau-Ginzburg models is found.
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Superconformal field theory on threebranes at a Calabi-Yau singularity

TL;DR: In this paper, it was shown that string theory on AdS5 × X5 can be described by a certain N = 1 supersymmetric gauge theory, which we describe in detail.
Journal ArticleDOI

Supergravity and a Confining Gauge Theory: Duality Cascades and $\chi$SB-Resolution of Naked Singularities

TL;DR: In this article, a non-singular pure-supergravity background dual to the field theory on all scales, with small curvature everywhere if the Hooft coupling g_s M is large, was proposed.
Book ChapterDOI

Lie Algebra Cohomology and the Generalized Borel-Weil Theorem

TL;DR: The present paper will be referred to as Part I. A subsequent paper entitled, "Lie algebra cohomology and generalized Schubert cells, this article, which is referred as Part II.
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