Anomalous dispersion, superluminality, and instabilities in two-flavor theories with local non-Hermitian mass mixing

Author:

Chernodub Maxim N.1ORCID,Millington Peter2ORCID

Affiliation:

1. Institut Denis Poisson, CNRS UMR 7013, Université de Tours, Tours 37200, France and Department of Physics, West University of Timişoara, Bulevardul Vasile Pârvan 4, Timişoara 300223, Romania

2. Department of Physics and Astronomy, University of Manchester, Manchester M13 9PL, United Kingdom

Abstract

Pseudo-Hermitian field theories possess a global continuous “similarity” symmetry, interconnecting the theories with the same physical particle content and an identical mass spectrum. In their regimes with real spectra, within this family of similarity transformations, there is a map from the non-Hermitian theory to its Hermitian similarity partner. We promote the similarity transformation to a local symmetry, which requires the introduction of a new vector similarity field as a connection in the similarity space of non-Hermitian theories. In the case of non-Hermitian two-flavor scalar or fermion mixing and by virtue of a novel IR/UV mixing effect, the effect of inhomogeneous non-Hermiticity then reveals itself via anomalous dispersion, instabilities, and superluminal group velocities at very high momenta, thus setting an upper bound on the particle momentum propagating through inhomogeneous backgrounds characterized by Lagrangians with non-Hermitian mass matrices. Such a non-Hermitian extension of the Standard Model of particle physics, encoded in a weak inhomogeneity of the non-Hermitian part of the fermion mass matrix, may nevertheless provide us with a low-energy particle spectrum consistent with experimentally observed properties. Published by the American Physical Society 2024

Funder

Royal Society

Science and Technology Facilities Council

UK Research and Innovation

University of Nottingham

Publisher

American Physical Society (APS)

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