If, during the early Universe epoch, the dark matter particle thermalizes in a hidden sector which does not thermalize with the Standard Model thermal bath, its relativistic thermal decoupling can easily lead to the observed relic density, even if the dark matter particle mass is many orders of magnitude heavier than the usual ∼ eV hot relic mass scale. This straightforward scenario simply requires that the temperature of the hidden sector thermal bath is one to five orders of magnitude cooler than the temperature of the Standard Model thermal bath. In this way the resulting relic density turns out to be determined only by the dark matter mass scale and the ratio of the temperatures of both sectors. In a model independent way we determine t...
Abstract. We describe the evolution of Dark Matter (DM) abundance from the very onset of its creatio...
It is usually thought that the present mass density of the Universe is dominated by a weakly interac...
We discuss a simple model of thermal relic dark matter whose mass can be much larger than the so-cal...
Dark matter may be hidden, with no standard model gauge interactions. At the same time, in WIMPless ...
Dark matter may be hidden, with no standard model gauge interactions. At the same time, in WIMPless ...
In this letter, we consider a class of scenarios in which the dark matter is part of a heavy hidden ...
We show that hidden hot dark matter, hidden-sector dark matter with interactions that decouple when...
We show that hidden hot dark matter, hidden-sector dark matter with interactions that decouple when...
Nonthermal dark matter generation is an appealing alternative to the standard paradigm of thermal WI...
Nonthermal dark matter generation is an appealing alternative to the standard paradigm of thermal WI...
Nonthermal dark matter generation is an appealing alternative to the standard paradigm of thermal WI...
Nonthermal dark matter generation is an appealing alternative to the standard paradigm of thermal WI...
AbstractIn this letter, we consider a class of scenarios in which the dark matter is part of a heavy...
The thermal relic density of dark matter is conventionally set by two-body annihilations. We point o...
The ‘WIMP miracle ’ for the relic abundance of thermal dark matter mo-tivates weak scale dark matter...
Abstract. We describe the evolution of Dark Matter (DM) abundance from the very onset of its creatio...
It is usually thought that the present mass density of the Universe is dominated by a weakly interac...
We discuss a simple model of thermal relic dark matter whose mass can be much larger than the so-cal...
Dark matter may be hidden, with no standard model gauge interactions. At the same time, in WIMPless ...
Dark matter may be hidden, with no standard model gauge interactions. At the same time, in WIMPless ...
In this letter, we consider a class of scenarios in which the dark matter is part of a heavy hidden ...
We show that hidden hot dark matter, hidden-sector dark matter with interactions that decouple when...
We show that hidden hot dark matter, hidden-sector dark matter with interactions that decouple when...
Nonthermal dark matter generation is an appealing alternative to the standard paradigm of thermal WI...
Nonthermal dark matter generation is an appealing alternative to the standard paradigm of thermal WI...
Nonthermal dark matter generation is an appealing alternative to the standard paradigm of thermal WI...
Nonthermal dark matter generation is an appealing alternative to the standard paradigm of thermal WI...
AbstractIn this letter, we consider a class of scenarios in which the dark matter is part of a heavy...
The thermal relic density of dark matter is conventionally set by two-body annihilations. We point o...
The ‘WIMP miracle ’ for the relic abundance of thermal dark matter mo-tivates weak scale dark matter...
Abstract. We describe the evolution of Dark Matter (DM) abundance from the very onset of its creatio...
It is usually thought that the present mass density of the Universe is dominated by a weakly interac...
We discuss a simple model of thermal relic dark matter whose mass can be much larger than the so-cal...