Can A Pseudo-Nambu-Goldstone Higgs Lead To Symmetry Non-Restoration?
arXiv:1508.05121 · doi:10.1007/JHEP01(2016)002
Abstract
The calculation of finite temperature contributions to the scalar potential in a quantum field theory is similar to the calculation of loop corrections at zero temperature. In natural extensions of the Standard Model where loop corrections to the Higgs potential cancel between Standard Model degrees of freedom and their symmetry partners, it is interesting to contemplate whether finite temperature corrections also cancel, raising the question of whether a broken phase of electroweak symmetry may persist at high temperature. It is well known that this does not happen in supersymmetric theories because the thermal contributions of bosons and fermions do not cancel each other. However, for theories with same spin partners, the answer is less obvious. Using the Twin Higgs model as a benchmark, we show that although thermal corrections do cancel at the level of quadratic divergences, subleading corrections still drive the system to a restored phase. We further argue that our conclusions generalize to other well-known extensions of the Standard Model where the Higgs is rendered natural by being the pseudo-Nambu-Goldstone mode of an approximate global symmetry.
21 pages, 5 figures. v2: fixed problem related to references with 9-digit arXiv identifiers. v3: references added v4: Some clarifications and more references added; matches published version
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Cited by in corpus (15)
- High Scale Electroweak Phase Transition: Baryogenesis & Symmetry Non-Restoration
- Is the Relaxion an Axion?
- Unrestored Electroweak Symmetry
- Direct Detection of Mirror Matter in Twin Higgs Models
- Phase Transitions in Twin Higgs Models
- A New Approach to Electroweak Symmetry Non-Restoration
- High-Temperature Electroweak Symmetry Breaking by SM Twins
- Self Consistent Thermal Resummation: A Case Study of the Phase Transition in 2HDM
- Coset Cosmology
- Singleton Portals to the Twin Sector
- Electroweak Symmetry Non-Restoration from Dark Matter
- First-order phase transitions in Twin Higgs models
- Twin Quark Dark Matter From Cogenesis
- Towards TeV-Scale Supersymmetric Electroweak Baryogenesis
- Review of Neutral Naturalness