We consider the vacuum expectation values of 1/2-BPS circular Wilson loops in N=4 super Yang-Mills theory in the totally antisymmetric representation of the gauge group U(N) or SU(N). Localization and matrix model techniques provide exact, but rather formal, expressions for these expectation values. In this paper we show how to extract the leading and sub-leading behavior in a 1/N expansion with fixed 't Hooft coupling starting from these exact results. This is done by exploiting the relation between the generating function of antisymmetric Wilson loops and a finite-dimensional quantum system known as the truncated harmonic oscillator. Sum and integral representations for the 1/N terms are provided
We consider conformal N=2 super Yang-Mills theories with gauge group SU(N) and N_f = 2N fundamental ...
We consider the 1/2 BPS circular Wilson loop in a generic N = 2 SU(N) SYM theory with conformal matt...
We investigate the 1/2-BPS Wilson-'t Hooft loops in ${\cal N}=4$ Super-Yang-Mills theory. We use the...
We consider the vacuum expectation values of 1/2-BPS circular Wilson loops in N=4 super Yang-Mills t...
We consider the vacuum expectation values of 1/2-BPS circular Wilson loops in N=4 super Yang-Mills t...
Indexación: Scopus.A.C. and A.F. were supported by Fondecyt # 1160282. supported by the I.N.F.N., re...
Abstract We consider the vacuum expectation values of 1/2-BPS circular Wilson loops in N=4 $$ \mathc...
We compute the exact vacuum expectation value of 1/2 BPS circular Wilson loops of $ \mathcal{N} $ = ...
We will argue that the 1/2 BPS Wilson loops in the anti-symmetric representations in the N = 4 super...
Following Polchinski and Sully (arXiv:1104.5077), we consider a generalized Wilson loop operator con...
Abstract We study the 12 $$ \frac{1}{2} $$ -BPS circular Wilson loop in the totally antisymmetric re...
We study the connected correlator of 1/2 BPS winding Wilson loops in N = 4 U(N) super Yang-Mills the...
We consider certain 1/4 BPS Wilson loop operators in SU(N) N=4 supersymmetric Yang-Mills theory, who...
We consider certain 1/4 BPS Wilson loop operators in SU(N) N=4 supersymmetric Yang-Mills theory, who...
We consider certain 1/4 BPS Wilson loop operators in SU(N) N = 4 supersymmetric Yang-Mills theory, w...
We consider conformal N=2 super Yang-Mills theories with gauge group SU(N) and N_f = 2N fundamental ...
We consider the 1/2 BPS circular Wilson loop in a generic N = 2 SU(N) SYM theory with conformal matt...
We investigate the 1/2-BPS Wilson-'t Hooft loops in ${\cal N}=4$ Super-Yang-Mills theory. We use the...
We consider the vacuum expectation values of 1/2-BPS circular Wilson loops in N=4 super Yang-Mills t...
We consider the vacuum expectation values of 1/2-BPS circular Wilson loops in N=4 super Yang-Mills t...
Indexación: Scopus.A.C. and A.F. were supported by Fondecyt # 1160282. supported by the I.N.F.N., re...
Abstract We consider the vacuum expectation values of 1/2-BPS circular Wilson loops in N=4 $$ \mathc...
We compute the exact vacuum expectation value of 1/2 BPS circular Wilson loops of $ \mathcal{N} $ = ...
We will argue that the 1/2 BPS Wilson loops in the anti-symmetric representations in the N = 4 super...
Following Polchinski and Sully (arXiv:1104.5077), we consider a generalized Wilson loop operator con...
Abstract We study the 12 $$ \frac{1}{2} $$ -BPS circular Wilson loop in the totally antisymmetric re...
We study the connected correlator of 1/2 BPS winding Wilson loops in N = 4 U(N) super Yang-Mills the...
We consider certain 1/4 BPS Wilson loop operators in SU(N) N=4 supersymmetric Yang-Mills theory, who...
We consider certain 1/4 BPS Wilson loop operators in SU(N) N=4 supersymmetric Yang-Mills theory, who...
We consider certain 1/4 BPS Wilson loop operators in SU(N) N = 4 supersymmetric Yang-Mills theory, w...
We consider conformal N=2 super Yang-Mills theories with gauge group SU(N) and N_f = 2N fundamental ...
We consider the 1/2 BPS circular Wilson loop in a generic N = 2 SU(N) SYM theory with conformal matt...
We investigate the 1/2-BPS Wilson-'t Hooft loops in ${\cal N}=4$ Super-Yang-Mills theory. We use the...