The non-thermal production of dark matter (DM) usually requires very tiny couplings of the dark sector with the visible sector and therefore is notoriously challenging to hunt in laboratory experiments. Here we propose a novel pathway to test such a production in the context of a non-standard cosmological history, using both gravitational wave (GW) and laboratory searches. We investigate the formation of DM from the decay of a scalar field that we dub as the reheaton, as it also reheats the Universe when it decays. We consider the possibility that the Universe undergoes a phase with kination-like stiff equation-of-state (wkin > 1/3) before the reheaton dominates the energy density of the Universe and eventually decays into Standard Model an...
The thermal freeze-out mechanism in its classical form is tightly connected to physics beyond the St...
We study the effects of various phenomena which may have happened in the early universe on the spe...
The lightest $Z_2$ odd particle in the scotogenic model, referred to as scotogenic dark matter (DM),...
We demonstrate the existence of a generic, efficient and purely gravitational channel producing a si...
In this paper we present a novel mechanism for producing the observed Dark Matter (DM) relic abundan...
In standard cosmology, the growth of structure becomes significant following matter-radiation equali...
In standard cosmology, the growth of structure becomes significant following matter-radiation equali...
It is shown that space-based gravitational-wave detectors such as DECIGO and/or the Big Bang Observe...
We describe the evolution of Dark Matter (DM) abundance from the very onset of its creation from inf...
In standard cosmology it is assumed that dark matter (DM) is thermally produced during the radiation...
The origin of dark matter as a thermal relic offers a compelling way in which the early universe was...
The origin of dark matter as a thermal relic offers a compelling way in which the early universe was...
To trace the particle nature of dark matter (DM) from cosmic microwave background observations, we s...
The Universe's early thermal history is poorly constrained, and it is possible that it underwent a p...
We propose a scenario where superheavy dark matter (DM) can be produced via symmetry restoration fir...
The thermal freeze-out mechanism in its classical form is tightly connected to physics beyond the St...
We study the effects of various phenomena which may have happened in the early universe on the spe...
The lightest $Z_2$ odd particle in the scotogenic model, referred to as scotogenic dark matter (DM),...
We demonstrate the existence of a generic, efficient and purely gravitational channel producing a si...
In this paper we present a novel mechanism for producing the observed Dark Matter (DM) relic abundan...
In standard cosmology, the growth of structure becomes significant following matter-radiation equali...
In standard cosmology, the growth of structure becomes significant following matter-radiation equali...
It is shown that space-based gravitational-wave detectors such as DECIGO and/or the Big Bang Observe...
We describe the evolution of Dark Matter (DM) abundance from the very onset of its creation from inf...
In standard cosmology it is assumed that dark matter (DM) is thermally produced during the radiation...
The origin of dark matter as a thermal relic offers a compelling way in which the early universe was...
The origin of dark matter as a thermal relic offers a compelling way in which the early universe was...
To trace the particle nature of dark matter (DM) from cosmic microwave background observations, we s...
The Universe's early thermal history is poorly constrained, and it is possible that it underwent a p...
We propose a scenario where superheavy dark matter (DM) can be produced via symmetry restoration fir...
The thermal freeze-out mechanism in its classical form is tightly connected to physics beyond the St...
We study the effects of various phenomena which may have happened in the early universe on the spe...
The lightest $Z_2$ odd particle in the scotogenic model, referred to as scotogenic dark matter (DM),...