English

Bose-Fermi Degeneracies in Large $N$ Adjoint QCD

High Energy Physics - Theory 2015-09-07 v3 High Energy Physics - Lattice

Abstract

We analyze the large NN limit of adjoint QCD, an SU(N)SU(N) gauge theory with NfN_f flavors of massless adjoint Majorana fermions, compactified on S3×S1S^3 \times S^1. We focus on the weakly-coupled confining small-S3S^3 regime. If the fermions are given periodic boundary conditions on S1S^1, we show that there are large cancellations between bosonic and fermionic contributions to the twisted partition function. These cancellations follow a pattern previously seen in the context of misaligned supersymmetry, and lead to the absence of Hagedorn instabilities for any S1S^1 size LL, even though the bosonic and fermionic densities of states both have Hagedorn growth. Adjoint QCD stays in the confining phase for any LN0L \sim N^0, explaining how it is able to enjoy large NN volume independence for any LL. The large NN boson-fermion cancellations take place in a setting where adjoint QCD is manifestly non-supersymmetric at any finite NN, and are consistent with the recent conjecture that adjoint QCD has emergent fermionic symmetries in the large NN limit.

Keywords

Cite

@article{arxiv.1409.1617,
  title  = {Bose-Fermi Degeneracies in Large $N$ Adjoint QCD},
  author = {Gokce Basar and Aleksey Cherman and David A. McGady},
  journal= {arXiv preprint arXiv:1409.1617},
  year   = {2015}
}

Comments

35 pages, 5 figures. v3: further minor corrections

R2 v1 2026-06-22T05:49:05.403Z