Probing the gauge symmetry breaking of the early universe in 3-3-1 models and beyond by gravitational waves
arXiv:1701.04338 · doi:10.1016/j.physletb.2018.11.024
Abstract
Taking the 3-3-1 models (with gauge group) as examples, we study that a class of new physics models with extended gauge group could undergo one or several first-order phase transitions associated with the spontaneously symmetry breaking processes during the evolution of the universe, which can produce detectable phase transition gravitational wave (GW) signals at future GW experiments, such as LISA, BBO, DECIGO, SKA and aLIGO. These GW signals can provide new sources of GWs with different peak frequencies, and can be used to probe the evolution history of the universe.
Published version for Physics Letters B
References in corpus (12)
- Laser Interferometer Space Antenna
- Gravitational-wave sensitivity curves
- Gravitational Waves from Phase Transitions at the Electroweak Scale and Beyond
- Gravitational waves from bubble collisions: analytic derivation
- Electroweak baryogenesis and gravitational waves from a real scalar singlet
- Nnaturalness
- Probing the Electroweak Phase Transition with Higgs Factories and Gravitational Waves
- Limiting First Order Phase Transitions in Dark Gauge Sectors from Gravitational Waves experiments
- Cosmological Signatures of a UV-Conformal Standard Model
- Probing extra dimension through gravitational wave observations of compact binaries and their electromagnetic counterparts
- Collider Phenomenology of the 3-3-1 Model
- A possible interpretation of the Higgs mass by the cosmological attractive relaxion
Cited by in corpus (27)
- Cosmology with the Laser Interferometer Space Antenna
- Cosmological phase transitions: from perturbative particle physics to gravitational waves
- Cosmic phase transitions: their applications and experimental signatures
- Dark Quark Nuggets
- Gravitational waves from bubble dynamics: Beyond the Envelope
- Phase transition and gravitational wave phenomenology of scalar conformal extensions of the Standard Model
- Detection of Early-Universe Gravitational Wave Signatures and Fundamental Physics
- Science with the TianQin Observatory: Preliminary Results on Stochastic Gravitational-Wave Background
- Phase transition dynamics and gravitational wave spectra of strong first-order phase transition in supercooled universe
- Fingerprinting models of first-order phase transitions by the synergy between collider and gravitational-wave experiments
- Gravitational wave and collider probes of a triplet Higgs sector with a low cutoff
- Gravitational wave and collider signals in complex two-Higgs doublet model with dynamical CP-violation at finite temperature
- BubbleProfiler: finding the field profile and action for cosmological phase transitions
- Baryon and Lepton Number Violation from Gravitational Waves
- Possibility of multi-step electroweak phase transition in the two Higgs doublet models
- Probing multi-step electroweak phase transition with multi-peaked primordial gravitational waves spectra
- Two-field cosmological phase transitions and gravitational waves in the singlet Majoron model
- Gravitational Wave Signatures of Lepton Universality Violation
- Sound velocity effects on the phase transition gravitational wave spectrum in the sound shell model
- Detecting circular polarisation in the stochastic gravitational-wave background from a first-order cosmological phase transition
- Self Consistent Thermal Resummation: A Case Study of the Phase Transition in 2HDM
- Gravitational waves and tadpole resummation: Efficient and easy convergence of finite temperature QFT
- Gravitational Wave Imprint of New Symmetry Breaking
- Fundamental Physics and Cosmology with TianQin
- Gravitational waves from the phase transition in the B-LSSM
- Gravitational waves from patterns of electroweak symmetry breaking: an effective perspective
- Revisiting Singlet Fermion Dark Matter with a Scalar Portal: Connecting Higgs Phenomenology and Strong Electroweak Phase Transition