4.5 Article

On the Coulomb and Higgs branch formulae for multi-centered black holes and quiver invariants

Journal

JOURNAL OF HIGH ENERGY PHYSICS
Volume -, Issue 5, Pages -

Publisher

SPRINGER
DOI: 10.1007/JHEP05(2013)166

Keywords

Black Holes in String Theory; Differential and Algebraic Geometry; Black Holes

Funding

  1. Department of Science and Technology, India
  2. [11-RD-HRI-5.02-0304]

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In previous work we have shown that the equivariant index of multi-centered N = 2 black holes localizes on collinear con figurations along a fixed axis. Here we provide a general algorithm for enumerating such collinear con figurations and computing their contribution to the index. We apply this machinery to the case of black holes described by quiver quantum mechanics, and give a systematic prescription - the Coulomb branch formula for computing the cohomology of the moduli space of quiver representations. For quivers without oriented loops, the Coulomb branch formula is shown to agree with the Higgs branch formula based on Reineke's result for stack invariants, even when the dimension vector is not primitive. For quivers with oriented loops, the Coulomb branch formula parametrizes the Poincare polynomial of the quiver moduli space in terms of single-centered (or pure-Higgs) BPS invariants, which are conjecturally independent of the stability condition (i.e. the choice of Fayet-Iliopoulos parameters) and angular-momentum free. To facilitate further investigation we provide a Mathematic a package CoulombHiggs.m implementing the Coulomb and Higgs branch formulae.

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