International audienceWe study the effects of feebly or nonannihilating weakly interacting dark matter (DM) particles on stars that live in DM environments denser than that of our Sun. We find that the energy transport mechanism induced by DM particles can produce unusual conditions in the cores of main sequence stars, with effects which can potentially be used to probe DM properties. We find that solar mass stars placed in DM densities of ρχ≥102GeV/cm3 are sensitive to spin-dependent scattering cross section σSD≥10-37cm2 and a DM particle mass as low as mχ=5GeV, accessing a parameter range weakly constrained by current direct detection experiments
When studying astrophysical structures with sizes ranging from dwarf galaxies to galaxy clusters, it...
We discuss the consequences of the accretion of dark matter (DM) particles on compact stars such as ...
We study the impact of asymmetric bosonic dark matter on neutron star properties, including possible...
We study the effects of feebly or nonannihilating weakly interacting dark matter (DM) particles on s...
Abstract. We report recent results on the impact of asymmetric dark matter (DM) particles on low-mas...
So far, direct detection searches have come empty handed in their quest for Dark Matter (DM). Meanwh...
We report the first constraints on the properties of weakly interacting low-mass dark matter (DM) pa...
International audienceThe recent detection of a convective core in a main-sequence solar-type star i...
We report the first constraints on the properties of weakly interacting low-mass dark matter (DM) pa...
High-precision asteroseismic data provides an excellent opportunity to test theories of stellar evol...
International audienceWe discuss the consequences of the accretion of dark matter (DM) particles on ...
The annihilation of huge quantities of captured dark matter (DM) particles inside low-mass stars has...
In the ΛCDM model, ≈ 26% of the matter-energy content of the Universe is in the form of an unidentif...
International audienceWe study the effect of dark matter (DM) particles in the Sun, focusing, in par...
We studied the rate at which stars capture dark matter (DM) particles, considering different assumpt...
When studying astrophysical structures with sizes ranging from dwarf galaxies to galaxy clusters, it...
We discuss the consequences of the accretion of dark matter (DM) particles on compact stars such as ...
We study the impact of asymmetric bosonic dark matter on neutron star properties, including possible...
We study the effects of feebly or nonannihilating weakly interacting dark matter (DM) particles on s...
Abstract. We report recent results on the impact of asymmetric dark matter (DM) particles on low-mas...
So far, direct detection searches have come empty handed in their quest for Dark Matter (DM). Meanwh...
We report the first constraints on the properties of weakly interacting low-mass dark matter (DM) pa...
International audienceThe recent detection of a convective core in a main-sequence solar-type star i...
We report the first constraints on the properties of weakly interacting low-mass dark matter (DM) pa...
High-precision asteroseismic data provides an excellent opportunity to test theories of stellar evol...
International audienceWe discuss the consequences of the accretion of dark matter (DM) particles on ...
The annihilation of huge quantities of captured dark matter (DM) particles inside low-mass stars has...
In the ΛCDM model, ≈ 26% of the matter-energy content of the Universe is in the form of an unidentif...
International audienceWe study the effect of dark matter (DM) particles in the Sun, focusing, in par...
We studied the rate at which stars capture dark matter (DM) particles, considering different assumpt...
When studying astrophysical structures with sizes ranging from dwarf galaxies to galaxy clusters, it...
We discuss the consequences of the accretion of dark matter (DM) particles on compact stars such as ...
We study the impact of asymmetric bosonic dark matter on neutron star properties, including possible...