PaperPanorama

arXiv:2607.07921·v2·High Energy Physics — Phenomenology

Serendipitous supersymmetric solution to the strong CP problem

Howard Baer🇺🇸 · Vernon Barger🇺🇸 · Dibyashree Sengupta🇨🇾

PDFarXivINSPIRE

Abstract

The Minimal Supersymmetric Standard Model (MSSM) has several problems: 1. its term must be forbidden, then regenerated at the weak scale, 2. it allows for -parity violating superpotential terms which lead to rapid proton decay, 3. it allows for dimension-5 proton decay operators. The usual imposition of - or matter parity solves only the second of these, whereas anomaly-free discrete symmetries (consistent with grand unification) address all of them. Once the -term is forbidden by the imposition of a discrete symmetry (which can emerge as a discrete remnant of string compactifications to 4-dimensions), the MSSM develops an accidental global symmetry (thus providing a plausible origin for the global needed for solving the strong CP problem). By coupling the Higgs fields to PQ-charged gauge singlet fields (in the Kim-Nilles mechanism), and imposing SUSY breaking, one regenerates at the weak scale whilst breaking the discrete and the . The broken global develops a pseudo-Goldstone boson, the DFSZ axion, thus (perhaps inadvertently) solving the strong CP problem. In this setting, SUSY develops a dark matter candidate, the SUSY DFSZ axion, and possibly, though not necessarily, a WIMP dark matter candidate as well, depending on the order of the induced -parity violating operators.

Comments: 10 pages

Citation historyopen in Citation History ↗