Abstract. We report recent results on the impact of asymmetric dark matter (DM) particles on low-mass stars. First, we found that the small convective core expected in stars with masses between 1.1 and 1.3 M is suppressed due to DM cooling. Moreover, stars with masses below 1 M have their central temperatures and densities more strongly influenced by DM than in the solar case. We were able to put limits to the DM mass and spin-dependent DM-proton scattering cross section by comparing the modelling of the nearby star α Cen B with photometric, spectroscopic and asteroseismic observations. 1
We analyze the distribution of stars along the GD-1 stream with a combinationof data from the ${\it ...
International audienceWe investigate the effects of a magnetic dipole moment of asymmetric dark matt...
We present updated constraints on dark matter models with momentumdependent or velocity-dependent in...
We report the first constraints on the properties of weakly interacting low-mass dark matter (DM) pa...
We report the first constraints on the properties of weakly interacting low-mass dark matter (DM) pa...
So far, direct detection searches have come empty handed in their quest for Dark Matter (DM). Meanwh...
High-precision asteroseismic data provides an excellent opportunity to test theories of stellar evol...
We study the effects of feebly or nonannihilating weakly interacting dark matter (DM) particles on s...
International audienceWe study the effects of feebly or nonannihilating weakly interacting dark matt...
The annihilation of huge quantities of captured dark matter (DM) particles inside low-mass stars has...
We study the impact of asymmetric bosonic dark matter on neutron star properties, including possible...
In the ΛCDM model, ≈ 26% of the matter-energy content of the Universe is in the form of an unidentif...
International audienceThe recent detection of a convective core in a main-sequence solar-type star i...
The dark matter content of the universe is likely to be a mixture of matter and antimatter, perhaps ...
International audienceWe study the effect of dark matter (DM) particles in the Sun, focusing, in par...
We analyze the distribution of stars along the GD-1 stream with a combinationof data from the ${\it ...
International audienceWe investigate the effects of a magnetic dipole moment of asymmetric dark matt...
We present updated constraints on dark matter models with momentumdependent or velocity-dependent in...
We report the first constraints on the properties of weakly interacting low-mass dark matter (DM) pa...
We report the first constraints on the properties of weakly interacting low-mass dark matter (DM) pa...
So far, direct detection searches have come empty handed in their quest for Dark Matter (DM). Meanwh...
High-precision asteroseismic data provides an excellent opportunity to test theories of stellar evol...
We study the effects of feebly or nonannihilating weakly interacting dark matter (DM) particles on s...
International audienceWe study the effects of feebly or nonannihilating weakly interacting dark matt...
The annihilation of huge quantities of captured dark matter (DM) particles inside low-mass stars has...
We study the impact of asymmetric bosonic dark matter on neutron star properties, including possible...
In the ΛCDM model, ≈ 26% of the matter-energy content of the Universe is in the form of an unidentif...
International audienceThe recent detection of a convective core in a main-sequence solar-type star i...
The dark matter content of the universe is likely to be a mixture of matter and antimatter, perhaps ...
International audienceWe study the effect of dark matter (DM) particles in the Sun, focusing, in par...
We analyze the distribution of stars along the GD-1 stream with a combinationof data from the ${\it ...
International audienceWe investigate the effects of a magnetic dipole moment of asymmetric dark matt...
We present updated constraints on dark matter models with momentumdependent or velocity-dependent in...