An era of kination occurs when the Universe's energy density is dominated by a fast-rolling scalar field. Dark matter that is thermally produced during an era of kination requires larger-than-canonical annihilation cross sections to generate the observed dark matter relic abundance. Furthermore, dark matter density perturbations that enter the horizon during an era of kination grow linearly with the scale factor prior to radiation domination. We show how the resulting enhancement to the small-scale matter power spectrum increases the microhalo abundance and boosts the dark matter annihilation rate. We then use gamma-ray observations to constrain thermal dark matter production during kination. The annihilation boost factor depends on the min...
The presence of light thermally coupled dark matter affects early expansion history and production o...
The Universe's early thermal history is poorly constrained, and it is possible that it underwent a p...
We investigate the possibility of keV scale thermal dark matter in a minimal gauged $B - L$ extensio...
If the Universe's energy density was dominated by a fast-rolling scalar field while the radiation ba...
Our ignorance of the period between the end of inflation and the beginning of Big Bang Nucleosynthes...
The early universe may have contained internally thermalized dark sectors that were decoupled from t...
A novel particle has been and still is an intriguing option to explain the strong evidence for dark ...
A novel paradigm for thermal dark matter (DM), termed "bouncing dark matter", is presented. In canon...
The evolution of the Universe between inflation and the onset of big bang nucleosynthesis is difficu...
In standard cosmology, the growth of structure becomes significant following matter-radiation equali...
We consider a dark sector scenario with two dark matter species with opposite dark $U(1)$ charges an...
If dark matter resides in a hidden sector minimally coupled to the Standard Model, another particle ...
In order to predict the cosmological abundance of dark matter, an estimation of particle rates in an...
Measurements of the primordial element abundances provide us with an important probe of our universe...
Dark matter is the dominant form of matter in today's universe. Its gravitational effects drive the ...
The presence of light thermally coupled dark matter affects early expansion history and production o...
The Universe's early thermal history is poorly constrained, and it is possible that it underwent a p...
We investigate the possibility of keV scale thermal dark matter in a minimal gauged $B - L$ extensio...
If the Universe's energy density was dominated by a fast-rolling scalar field while the radiation ba...
Our ignorance of the period between the end of inflation and the beginning of Big Bang Nucleosynthes...
The early universe may have contained internally thermalized dark sectors that were decoupled from t...
A novel particle has been and still is an intriguing option to explain the strong evidence for dark ...
A novel paradigm for thermal dark matter (DM), termed "bouncing dark matter", is presented. In canon...
The evolution of the Universe between inflation and the onset of big bang nucleosynthesis is difficu...
In standard cosmology, the growth of structure becomes significant following matter-radiation equali...
We consider a dark sector scenario with two dark matter species with opposite dark $U(1)$ charges an...
If dark matter resides in a hidden sector minimally coupled to the Standard Model, another particle ...
In order to predict the cosmological abundance of dark matter, an estimation of particle rates in an...
Measurements of the primordial element abundances provide us with an important probe of our universe...
Dark matter is the dominant form of matter in today's universe. Its gravitational effects drive the ...
The presence of light thermally coupled dark matter affects early expansion history and production o...
The Universe's early thermal history is poorly constrained, and it is possible that it underwent a p...
We investigate the possibility of keV scale thermal dark matter in a minimal gauged $B - L$ extensio...