Gravitational Waves from Dimension-6 Assisted Peccei - Quinn Phase Transitions
Nico Benincasa, Kristjan Müürsepp
Abstract
We consider a simple model-independent extension of the minimal KSVZ axion model, augmenting the Peccei - Quinn effective potential with a dimension-6 operator invariant under the Peccei - Quinn symmetry. We show that this operator can trigger a first-order phase transition and study its cosmological consequences. We map out the parameter space, consistent with present observational constraints, in which the phase transition produces a gravitational wave signal observable at current and future interferometers, and we investigate the resulting dark matter phenomenology. Finally, we present specific ultraviolet completions that generate the dimension-6 operator, each leading to distinct phenomenological signatures, which motivates our model-independent approach.
Create a lesson
Related papers
Comprehensive reconstruction of collider events with hypergraph representation learning and graph-conditioned diffusion
Lining Mao, Yvonne Peters, Ethan Simpson et al.
New Dynamics (?) of J/ψJ/ψ and ΥΥ families from QCD Laplace sum rules at NLO
S. Narison, Andry Rabemananjara, D. Rabetiarivony
Transverse Tau Spin Correlations and the Weak Electric Dipole Moment at Future Z Factories
Xin-Yu Du, Zi-Yue Zou, Xiao-Gang He et al.
Addressing the S-wave scalar f0(1500)-resonance in quasi-four-body FCNC rare Bs f0(1500) ( π+ π- ) + - / ν ν decays
Xue Zheng, Hai-Bing Fu, Dan-Dan Hu et al.
Complete electroweak corrections to diphoton production via gluon fusion at the LHC
Long-Bin Chen, Zi-Qiang Chen, Hai Tao Li et al.
Baryon-to-meson ratios in the Lund jet plane: resolving string-junction and thermal-fragmentation effects
Robert Vertesi