arXiv:1710.10956·v1·High Energy Physics — Lattice
Testing a non-perturbative mechanism for elementary fermion mass generation: lattice setup
Stefano Capitani🇩🇪 · Giulia Maria de Divitiis🇮🇹 · Petros Dimopoulos🇮🇹 · Roberto Frezzotti🇮🇹 · Marco Garofalo🇬🇧 · Bastian Knippschild🇩🇪 · Bartosz Kostrzewa🇩🇪 · Ferenc Pittler🇩🇪 · Giancarlo Rossi🇮🇹 · Carsten Urbach🇩🇪
Abstract
In this contribution we lay down a lattice setup that allows for the non-perturbative study of a field theoretical model where a SU(2) fermion doublet, subjected to non-Abelian gauge interactions, is also coupled to a complex scalar field doublet via a Yukawa and an "irrelevant" Wilson-like term. Using naive fermions in quenched approximation and based on the renormalized Ward identities induced by purely fermionic chiral transformations, lattice observables are discussed that enable: a) in the Wigner phase, the determinations of the critical Yukawa coupling value where the purely fermionic chiral transformation become a symmetry up to lattice artifacts; b) in the Nambu-Goldstone phase of the resulting critical theory, a stringent test of the actual generation of a fermion mass term of non-perturbative origin. A soft twisted fermion mass term is introduced to circumvent the problem of exceptional configurations, and observables are then calculated in the limit of vanishing twisted mass.
Comments: 8 pages, 2 figures; Proceedings of the 35th International Symposium on Lattice Field Theory, 18-24 June 2017, Granada, Spain. arXiv admin note: text overlap with arXiv:1611.03997