Title of article
Approximations for strongly-coupled supersymmetric quantum mechanics Original Research Article
Author/Authors
Daniel Kabat، نويسنده , , Gilad Lifschytz، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2000
Pages
38
From page
419
To page
456
Abstract
We advocate a set of approximations for studying the finite temperature behavior of strongly-coupled theories in 0+1 dimensions. The approximation consists of expanding about a Gaussian action, with the width of the Gaussian determined by a set of gap equations. The approximation can be applied to supersymmetric systems, provided that the gap equations are formulated in superspace. It can be applied to large-N theories, by keeping just the planar contribution to the gap equations.
We analyze several models of scalar supersymmetric quantum mechanics, and show that the Gaussian approximation correctly distinguishes between a moduli space, mass gap, and supersymmetry breaking at strong coupling. Then we apply the approximation to a bosonic large-N gauge theory, and argue that a Gross–Witten transition separates the weak-coupling and strong-coupling regimes. A similar transition should occur in a generic large-N gauge theory, in particular in 0-brane quantum mechanics.
Article Outline
1. Introduction
Keywords
Black holes in string theory , D-branes , Strongly-coupled gauge theory
Journal title
Nuclear Physics B
Serial Year
2000
Journal title
Nuclear Physics B
Record number
882117
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