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Vacuum structure of the left-right symmetric model

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arxiv 1811.06869 v1 pith:CGULPGD7 submitted 2018-11-16 hep-ph

Vacuum structure of the left-right symmetric model

classification hep-ph
keywords potentiallrsmmodelparameterspacevacuumanalyticallyconditions
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The left-right symmetric model (LRSM), originally proposed to explain parity violation in low energy processes, has since emerged as an attractive framework for light neutrino masses via the seesaw mechanism. The scalar sector of the minimal LRSM consists of an $SU(2)$ bi-doublet, as well as left- and right-handed weak isospin triplets, thus making the corresponding vacuum structure much more complicated than that of the Standard Model. In particular, the desired ground state of the Higgs potential should be a charge conserving, and preferably global, minimum with parity violation at low scales. We show that this is not a generic feature of the LRSM potential and happens only for a small fraction of the parameter space of the potential. We also analytically study the potential for some simplified cases and obtain useful conditions (though not necessary) to achieve successful symmetry breaking. We then carry out a detailed statistical analysis of the minima of the Higgs potential using numerical minimization and find that for a large fraction of the parameter space, the potential does not have a good vacuum. Imposing the analytically obtained conditions, we can readily find a small part of the parameter space with good vacua. Consequences for some scalar masses are also discussed.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Loop-Level Lepton Flavor Violation and Diphoton Signals in the Minimal Left-Right Symmetric Model

    hep-ph 2025-12 conditional novelty 6.0

    Recasting axion limits onto the one-loop H3 couplings of the minimal left-right symmetric model excludes the right-handed scale up to 2×10^9 GeV and could eventually probe 6×10^11 GeV.

  2. The Alternative Left-Right Scenario: Unitarity, Vacuum Stability and RG Evolution

    hep-ph 2026-05 unverdicted novelty 4.0

    Renormalization group evolution in the Alternative Left-Right Model restricts the allowed quartic couplings and yields upper bounds on extended Higgs scalar masses for theoretical consistency up to 10^16 GeV.