English

Infrared Fixed Point Physics in ${\rm SO}(N_c)$ and ${\rm Sp}(N_c)$ Gauge Theories

High Energy Physics - Theory 2017-11-29 v1 High Energy Physics - Lattice High Energy Physics - Phenomenology

Abstract

We study properties of asymptotically free vectorial gauge theories with gauge groups G=SO(Nc)G={\rm SO}(N_c) and G=Sp(Nc)G={\rm Sp}(N_c) and NfN_f fermions in a representation RR of GG, at an infrared (IR) zero of the beta function, αIR\alpha_{IR}, in the non-Abelian Coulomb phase. The fundamental, adjoint, and rank-2 symmetric and antisymmetric tensor fermion representations are considered. We present scheme-independent calculations of the anomalous dimensions of (gauge-invariant) fermion bilinear operators γψˉψ,IR\gamma_{\bar\psi\psi,IR} to O(Δf4)O(\Delta_f^4) and of the derivative of the beta function at αIR\alpha_{IR}, denoted βIR\beta'_{IR}, to O(Δf5)O(\Delta_f^5), where Δf\Delta_f is an NfN_f-dependent expansion variable. It is shown that all coefficients in the expansion of γψˉψ,IR\gamma_{\bar\psi\psi,IR} that we calculate are positive for all representations considered, so that to O(Δf4)O(\Delta_f^4), γψˉψ,IR\gamma_{\bar\psi\psi,IR} increases monotonically with decreasing NfN_f in the non-Abelian Coulomb phase. Using this property, we give a new estimate of the lower end of this phase for some specific realizations of these theories.

Keywords

Cite

@article{arxiv.1709.05358,
  title  = {Infrared Fixed Point Physics in ${\rm SO}(N_c)$ and ${\rm Sp}(N_c)$ Gauge Theories},
  author = {Thomas A. Ryttov and Robert Shrock},
  journal= {arXiv preprint arXiv:1709.05358},
  year   = {2017}
}