The minimal fermionic model of electroweak baryogenesis
Creators
- 1. C.N. Yang Institute for Theoretical Physics, Stony Brook University,Stony Brook, NY 11794 (United States)
Description
We present the minimal model of electroweak baryogenesis induced by fermions. The model consists of an extension of the Standard Model with one electroweak singlet fermion and one pair of vector like doublet fermions with renormalizable couplings to the Higgs. A strong first order phase transition is radiatively induced by the singlet-doublet fermions, while the origin of the baryon asymmetry is due to asymmetric reflection of the same set of fermions on the expanding electroweak bubble wall. The singlet-doublet fermions are stabilized at the electroweak scale by chiral symmetries and the Higgs potential is stabilized by threshold corrections coming from a multi-TeV ultraviolet completion which does not play any significant role in the phase transition. We work in terms of background symmetry invariants and perform an analytic semiclassical calculation of the baryon asymmetry, showing that the model may effectively generate the observed baryon asymmetry for percent level values of the unique invariant CP violating phase of the singlet-doublet sector. We include a detailed study of electron electric dipole moment and electroweak precision limits, and for one typical benchmark scenario, we also recast existing collider constraints, showing that the model is consistent with all current experimental data. We point out that fermion induced electroweak baryogenesis has irreducible phenomenology at the 13 TeV LHC since the new fermions must be at the electroweak scale, have electroweak quantum numbers and couple strongly to the Higgs. The most promising searches involve topologies with multiple leptons and missing energy in the final state.
Availability note (English)
Available from http://dx.doi.org/10.1007/JHEP12(2017)064; Available from http://repo.scoap3.org/record/22740Additional details
Identifiers
- DOI
- 10.1007/JHEP12(2017)064;
- arXiv
- arXiv:1707.02306;
Publishing Information
- Journal Title
- Journal of High Energy Physics (Online)
- Journal Volume
- 2017
- Journal Issue
- 12
- Journal Page Range
- p. 64
- ISSN
- 1029-8479
INIS
- Country of Publication
- Germany
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 49063010
- Subject category
- S72: PHYSICS OF ELEMENTARY PARTICLES AND FIELDS;
- Descriptors DEI
- BARYONS; CERN LHC; CHIRAL SYMMETRY; CP INVARIANCE; ELECTRIC DIPOLE MOMENTS; HIGGS BOSONS; HIGGS MODEL; PHASE TRANSFORMATIONS; QUANTUM NUMBERS; SEMICLASSICAL APPROXIMATION; STANDARD MODEL; TEV RANGE 10-100; WEINBERG-SALAM GAUGE MODEL
- Descriptors DEC
- ACCELERATORS; APPROXIMATIONS; BOSONS; CALCULATION METHODS; CYCLIC ACCELERATORS; DIPOLE MOMENTS; ELECTRIC MOMENTS; ELEMENTARY PARTICLES; ENERGY RANGE; FERMIONS; FIELD THEORIES; GRAND UNIFIED THEORY; HADRONS; INVARIANCE PRINCIPLES; MATHEMATICAL MODELS; PARTICLE MODELS; QUANTUM FIELD THEORY; STORAGE RINGS; SYMMETRY; SYNCHROTRONS; TEV RANGE; UNIFIED FIELD THEORIES; UNIFIED GAUGE MODELS
Optional Information
- Copyright
- Copyright (c) OPEN ACCESS, © The Authors
- Notes
- PUBLISHER-ID: JHEP12(2017)064; ARXIV:1707.02306; OAI: oai:repo.scoap3.org:22740
- Funding organization
- SCOAP3, CERN, Geneva (Switzerland)