We present updated constraints on dark matter models with momentum-dependent or velocity-dependent interactions with nuclei, based on direct detection and solar physics. We improve our previous treatment of energy transport in the solar interior by dark matter scattering, leading to significant changes in fits to many observables. Based on solar physics alone, DM with a spin-independent q4 coupling provides the best fit to data, and a statistically satisfactory solution to the solar abundance problem. Once direct detection limits are accounted for however, the best solution is spin-dependent v2 scattering with a reference cross-section of 10−35 cm2 (at a reference velocity of v0=220 km s−1), and a dark matter mass of about 5 GeV
We perform a comprehensive study of Milky Way (MW) satellite galaxies to constrain the fundamental p...
We present an improved event-level likelihood formalism for including neutrino telescope data in glo...
We study the implications of galaxy formation on dark matter direct detection using high resolution ...
We present updated constraints on dark matter models with momentum-dependent or velocity-dependent i...
We study the effects of energy transport in the Sun by asymmetric dark matter with momentum and velo...
Broad disagreement persists between helioseismological observables and predictions of solar models c...
We study the effects of energy transport in the Sun by asymmetric dark matter with momentum and velo...
So far, direct detection searches have come empty handed in their quest for Dark Matter (DM). Meanwh...
Dark matter with momentum- or velocity-dependent interactions with nuclei has shown significant pro...
In recent years, a revised set of solar abundances has led to a discrepancy in the sound-speed profi...
We explore the momentum and velocity dependent elastic scattering between the dark matter (DM) parti...
AbstractWe explore the momentum and velocity dependent elastic scattering between the dark matter (D...
International audienceThe dark matter content of the universe is likely to be a mixture of matter an...
International audienceWe investigate the effects of a magnetic dipole moment of asymmetric dark matt...
The scattering of light dark matter off thermal electrons inside the Sun produces a "fast" sub-compo...
We perform a comprehensive study of Milky Way (MW) satellite galaxies to constrain the fundamental p...
We present an improved event-level likelihood formalism for including neutrino telescope data in glo...
We study the implications of galaxy formation on dark matter direct detection using high resolution ...
We present updated constraints on dark matter models with momentum-dependent or velocity-dependent i...
We study the effects of energy transport in the Sun by asymmetric dark matter with momentum and velo...
Broad disagreement persists between helioseismological observables and predictions of solar models c...
We study the effects of energy transport in the Sun by asymmetric dark matter with momentum and velo...
So far, direct detection searches have come empty handed in their quest for Dark Matter (DM). Meanwh...
Dark matter with momentum- or velocity-dependent interactions with nuclei has shown significant pro...
In recent years, a revised set of solar abundances has led to a discrepancy in the sound-speed profi...
We explore the momentum and velocity dependent elastic scattering between the dark matter (DM) parti...
AbstractWe explore the momentum and velocity dependent elastic scattering between the dark matter (D...
International audienceThe dark matter content of the universe is likely to be a mixture of matter an...
International audienceWe investigate the effects of a magnetic dipole moment of asymmetric dark matt...
The scattering of light dark matter off thermal electrons inside the Sun produces a "fast" sub-compo...
We perform a comprehensive study of Milky Way (MW) satellite galaxies to constrain the fundamental p...
We present an improved event-level likelihood formalism for including neutrino telescope data in glo...
We study the implications of galaxy formation on dark matter direct detection using high resolution ...