In this work we consider a simple model for dark matter and identify regions of parameter space where the relic abundance is set via kinematic thresholds, which open and close due to thermal effects. We discuss instantaneous freeze-out, where dark matter suddenly freezes-out when the channel connecting dark matter to the thermal bath closes, and decaying dark matter, where dark matter freezes-out while relativistic and later decays when a kinematic threshold temporarily opens. These mechanisms can occur in the vicinity of a one-step or a two-step phase transition. In all cases thermal effects provide this dynamic behaviour, while ensuring that dark matter remains stable until the present day
Electroweak Symmetry Breaking (EWSB) is known to produce a massive universe that we live in. However...
We study the general properties of the freezeout of a thermal relic. We give analytic estimates of t...
We study the effects of modifying the expansions history of the Universe on dark matter freeze-out. ...
In this work we consider a simple model for dark matter and identify regions of parameter space wher...
In this work we consider a simple model for dark matter and identify regions of parameter space wher...
Abstract The cosmological abundance of dark matter can be significantly influenced by the temperatur...
Thermal freeze-out of a weakly interacting massive particle is the dominant paradigm for dark matter...
We study general freeze-out scenarios where an arbitrary number of initial and final dark matter par...
International audienceWe propose a new paradigm for the thermal production of dark matter in the ear...
We propose a new paradigm for the thermal production of dark matter in the early Universe, in which ...
The mystery of dark matter (DM) has intrigued scientists for many decades. The type of DM particles ...
A novel paradigm for thermal dark matter (DM), termed "bouncing dark matter", is presented. In canon...
We describe a new mechanism of dark matter production. If dark matter particles acquire mass during ...
A novel paradigm for thermal dark matter (DM), termed "bouncing dark matter", is presented. In canon...
Abstract In this work, we present UV completions of the recently proposed numbe...
Electroweak Symmetry Breaking (EWSB) is known to produce a massive universe that we live in. However...
We study the general properties of the freezeout of a thermal relic. We give analytic estimates of t...
We study the effects of modifying the expansions history of the Universe on dark matter freeze-out. ...
In this work we consider a simple model for dark matter and identify regions of parameter space wher...
In this work we consider a simple model for dark matter and identify regions of parameter space wher...
Abstract The cosmological abundance of dark matter can be significantly influenced by the temperatur...
Thermal freeze-out of a weakly interacting massive particle is the dominant paradigm for dark matter...
We study general freeze-out scenarios where an arbitrary number of initial and final dark matter par...
International audienceWe propose a new paradigm for the thermal production of dark matter in the ear...
We propose a new paradigm for the thermal production of dark matter in the early Universe, in which ...
The mystery of dark matter (DM) has intrigued scientists for many decades. The type of DM particles ...
A novel paradigm for thermal dark matter (DM), termed "bouncing dark matter", is presented. In canon...
We describe a new mechanism of dark matter production. If dark matter particles acquire mass during ...
A novel paradigm for thermal dark matter (DM), termed "bouncing dark matter", is presented. In canon...
Abstract In this work, we present UV completions of the recently proposed numbe...
Electroweak Symmetry Breaking (EWSB) is known to produce a massive universe that we live in. However...
We study the general properties of the freezeout of a thermal relic. We give analytic estimates of t...
We study the effects of modifying the expansions history of the Universe on dark matter freeze-out. ...