Electroweak Symmetry Breaking (EWSB) is known to produce a massive universe that we live in. However, it may also provide an important boundary for freeze-in or freeze-out of dark matter (DM) connected to Standard Model via Higgs portal as processes contributing to DM relic differ across the boundary. We explore such possibilities in a two-component DM framework, where a massive $U(1)_X$ gauge boson DM freezes-in and a scalar singlet DM freezes-out, that inherits the effect of EWSB for both the cases in a correlated way. Amongst different possibilities, we study two sample cases; first when one DM component freezes in and the other freezes out from thermal bath both necessarily $before$ EWSB and the second, when both freeze-in and freeze-ou...
Detecting dark matter (DM) relic via freeze-in is difficult in laboratories due to smallness of the ...
Feebly interacting thermal relics are promising dark matter candidates. Among them, scenarios of ine...
A novel particle has been and still is an intriguing option to explain the strong evidence for dark ...
International audienceElectroweak Symmetry Breaking (EWSB) is known to produce a massive universe th...
We study general freeze-out scenarios where an arbitrary number of initial and final dark matter par...
We propose a new freeze-in dark matter candidate which feebly couples to the standard model charged ...
The mystery of dark matter (DM) has intrigued scientists for many decades. The type of DM particles ...
We explore a new mechanism for reproducing the Dark Matter (DM) abundance: scatterings of one DM par...
Weakly Interacting Massive Particles (WIMPs) are among the best-motivated dark matter candidates. In...
We study the general properties of the freezeout of a thermal relic. We give analytic estimates of t...
We study dark matter freeze-in scenarios where the mass of the mediator particle that couples dark m...
We consider an extension of the Standard Model that explains the neutrino masses and has a rich dark...
We show that the minimal Type-I Seesaw mechanism can successfully account for the observed dark matt...
We propose a scenario where dark matter (DM) and dark radiation ($\Delta {\rm N}_{\rm eff}$) can be ...
Thermal freeze-out is a prominent example of dark matter (DM) production mechanism in the early Univ...
Detecting dark matter (DM) relic via freeze-in is difficult in laboratories due to smallness of the ...
Feebly interacting thermal relics are promising dark matter candidates. Among them, scenarios of ine...
A novel particle has been and still is an intriguing option to explain the strong evidence for dark ...
International audienceElectroweak Symmetry Breaking (EWSB) is known to produce a massive universe th...
We study general freeze-out scenarios where an arbitrary number of initial and final dark matter par...
We propose a new freeze-in dark matter candidate which feebly couples to the standard model charged ...
The mystery of dark matter (DM) has intrigued scientists for many decades. The type of DM particles ...
We explore a new mechanism for reproducing the Dark Matter (DM) abundance: scatterings of one DM par...
Weakly Interacting Massive Particles (WIMPs) are among the best-motivated dark matter candidates. In...
We study the general properties of the freezeout of a thermal relic. We give analytic estimates of t...
We study dark matter freeze-in scenarios where the mass of the mediator particle that couples dark m...
We consider an extension of the Standard Model that explains the neutrino masses and has a rich dark...
We show that the minimal Type-I Seesaw mechanism can successfully account for the observed dark matt...
We propose a scenario where dark matter (DM) and dark radiation ($\Delta {\rm N}_{\rm eff}$) can be ...
Thermal freeze-out is a prominent example of dark matter (DM) production mechanism in the early Univ...
Detecting dark matter (DM) relic via freeze-in is difficult in laboratories due to smallness of the ...
Feebly interacting thermal relics are promising dark matter candidates. Among them, scenarios of ine...
A novel particle has been and still is an intriguing option to explain the strong evidence for dark ...