In this paper we present a novel mechanism for producing the observed Dark Matter (DM) relic abundance during the First Order Phase Transition (FOPT) in the early universe. We show that the bubble expansion with ultra-relativistic velocities can lead to the abundance of DM particles with masses much larger than the scale of the transition. We study this non-thermal production mechanism in the context of a generic phase transition and the electroweak phase transition. The application of the mechanism to the Higgs portal DM as well as the signal in the Stochastic Gravitational Background are discussed. © 2021, The Author(s)
We describe the evolution of Dark Matter (DM) abundance from the very onset of its creation from inf...
The non-thermal production of dark matter (DM) usually requires very tiny couplings of the dark sect...
It is shown that dark energy can be obtained from the interplay of the Higgs boson and the inflaton....
We describe a new mechanism of dark matter production. If dark matter particles acquire mass during ...
We describe a new mechanism of dark matter production. If dark matter particles acquire mass during ...
We point out that dark matter which is produced non-adiabatically in a phase transition (PT) with fa...
We propose a scenario where superheavy dark matter (DM) can be produced via symmetry restoration fir...
In dimension-less theories of dynamical generation of the weak scale, the Universe can undergo a per...
We propose a new scenario for generating a relic density of non-relativistic dark matter in the cont...
In dimension-less theories of dynamical generation of the weak scale, the Universe can undergo a per...
We study production of scalar dark matter via the freeze-in mechanism in the relativistic regime, fo...
We describe a new mechanism of dark matter production in the early Universe, based on ...
We explore a new mechanism for reproducing the Dark Matter (DM) abundance: scatterings of one DM par...
We describe a new mechanism of dark matter production in the early Universe, based on ...
We study production of scalar dark matter via the freeze-in mechanism in the relativistic regime, fo...
We describe the evolution of Dark Matter (DM) abundance from the very onset of its creation from inf...
The non-thermal production of dark matter (DM) usually requires very tiny couplings of the dark sect...
It is shown that dark energy can be obtained from the interplay of the Higgs boson and the inflaton....
We describe a new mechanism of dark matter production. If dark matter particles acquire mass during ...
We describe a new mechanism of dark matter production. If dark matter particles acquire mass during ...
We point out that dark matter which is produced non-adiabatically in a phase transition (PT) with fa...
We propose a scenario where superheavy dark matter (DM) can be produced via symmetry restoration fir...
In dimension-less theories of dynamical generation of the weak scale, the Universe can undergo a per...
We propose a new scenario for generating a relic density of non-relativistic dark matter in the cont...
In dimension-less theories of dynamical generation of the weak scale, the Universe can undergo a per...
We study production of scalar dark matter via the freeze-in mechanism in the relativistic regime, fo...
We describe a new mechanism of dark matter production in the early Universe, based on ...
We explore a new mechanism for reproducing the Dark Matter (DM) abundance: scatterings of one DM par...
We describe a new mechanism of dark matter production in the early Universe, based on ...
We study production of scalar dark matter via the freeze-in mechanism in the relativistic regime, fo...
We describe the evolution of Dark Matter (DM) abundance from the very onset of its creation from inf...
The non-thermal production of dark matter (DM) usually requires very tiny couplings of the dark sect...
It is shown that dark energy can be obtained from the interplay of the Higgs boson and the inflaton....