We present a novel study on the problem of constructing mass models for the Milky Way, concentrating on features regarding the dark matter halo component. We have considered a variegated sample of dynamical observables for the Galaxy, including several results which have appeared recently, and studied a 7- or 8-dimensional parameter space - defining the Galaxy model - by implementing a Bayesian approach to the parameter estimation based on a Markov Chain Monte Carlo method. The main result of this analysis is a novel determination of the local dark matter halo density which, assuming spherical symmetry and either an Einasto or an NFW density profile is found to be around 0.39 GeV cm$^{-3}$ with a 1-$\sigma$ error bar of about 7%; more preci...
An accurate knowledge of the dark matter distribution in the Milky Way is of crucial importance for ...
An accurate knowledge of the dark matter distribution in the Milky Way is of crucial importance for ...
Constraints on dark matter halo masses from weak gravitational lensing can be improved significantly...
Context. The rotation curve, the total mass and the gravitational potential of the Galaxy are sensit...
I review current efforts to measure the mean density of dark matter near the Sun. This encodes valua...
We present a new determination of the local dark matter phase-space density. This result is obtained...
We present a new determination of the local dark matter phase-space density. This result is obtained...
International audienceA precise determination of the local dark matter density and an accurate contr...
International audienceA precise determination of the local dark matter density and an accurate contr...
We present a new method to constrain the dark matter halo density profiles of disk galaxies. Our alg...
We derive the mass model of the Milky Way (MW), crucial for Dark Matter (DM) direct and indirect det...
Local dark matter density, ρdm, is one of the crucial astrophysical inputs for the estimation of det...
Aims: We derive the value of the dark matter density at the Sun's location (ρ⊙) without fully modeli...
Local dark matter density, ρdm, is one of the crucial astrophysical inputs for the estimation of det...
Local dark matter density, ρdm, is one of the crucial astrophysical inputs for the estimation of det...
An accurate knowledge of the dark matter distribution in the Milky Way is of crucial importance for ...
An accurate knowledge of the dark matter distribution in the Milky Way is of crucial importance for ...
Constraints on dark matter halo masses from weak gravitational lensing can be improved significantly...
Context. The rotation curve, the total mass and the gravitational potential of the Galaxy are sensit...
I review current efforts to measure the mean density of dark matter near the Sun. This encodes valua...
We present a new determination of the local dark matter phase-space density. This result is obtained...
We present a new determination of the local dark matter phase-space density. This result is obtained...
International audienceA precise determination of the local dark matter density and an accurate contr...
International audienceA precise determination of the local dark matter density and an accurate contr...
We present a new method to constrain the dark matter halo density profiles of disk galaxies. Our alg...
We derive the mass model of the Milky Way (MW), crucial for Dark Matter (DM) direct and indirect det...
Local dark matter density, ρdm, is one of the crucial astrophysical inputs for the estimation of det...
Aims: We derive the value of the dark matter density at the Sun's location (ρ⊙) without fully modeli...
Local dark matter density, ρdm, is one of the crucial astrophysical inputs for the estimation of det...
Local dark matter density, ρdm, is one of the crucial astrophysical inputs for the estimation of det...
An accurate knowledge of the dark matter distribution in the Milky Way is of crucial importance for ...
An accurate knowledge of the dark matter distribution in the Milky Way is of crucial importance for ...
Constraints on dark matter halo masses from weak gravitational lensing can be improved significantly...