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arXiv:2404.02967·v2·High Energy Physics — Theory

A novel strategy to prove chiral symmetry breaking in QCD-like theories

Luca Ciambriello🇮🇹 · Roberto Contino🇮🇹 · Andrea Luzio🇮🇹 · Marcello Romano🇫🇷 · Ling-Xiao Xu🇮🇹

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Abstract

We demonstrate that chiral symmetry breaking occurs in the confining regime of QCD-like theories with colors and flavors. Our proof is based on a novel strategy, called `downlifting', by which solutions of the 't Hooft anomaly matching and persistent mass conditions for a theory with flavors are constructed from those of a theory with flavors, while is fixed. By induction, chiral symmetry breaking is proven for any in the confining regime, where is the smallest prime factor of . The proof can be extended to under the additional assumption on the absence of phase transitions when quark masses are sent to infinity. Our results do not rely on assumptions on the spectrum of massless bound states other than the fact that they are color-singlet hadrons.

Comments: v2: version to appear in Physics Letters B, some improvements; v1: 4 pages + supplementary material

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