We study the effect that uncertainties in the nuclear spin-dependent structure functions have in the determination of the dark matter (DM) parameters in a direct detection experiment. We show that different nuclear models that describe the spin-dependent structure function of specific target nuclei can lead to variations in the reconstructed values of the DM mass and scattering cross section. We propose a parametrization of the spin structure functions that allows us to treat these uncertainties as variations of three parameters, with a central value and deviation that depend on the specific nucleus. The method is illustrated for germanium and xenon detectors with an exposure of 300 kg yr, assuming a hypothetical detection of DM and studyin...
We update our exploration of the MSSM parameter space at the weak scale where new accelerator and co...
We study the impact of the assumed velocity distribution of galactic dark matter particles on the in...
All attempts to directly detect particle dark matter (DM) scattering on nuclei suffer from the parti...
We study the effect that uncertainties in the nuclear spin-dependent structure functions have in the...
The standard interpretation of direct-detection limits on dark matter involves particular assumption...
We review the calculation of spin-dependent matrix elements relevant to scattering of weakly interac...
International audienceWe investigate the reconstruction capabilities of the dark matter mass and spi...
Following the construction of the general effective theory for dark matter direct detection in [1], ...
The Weakly Interacting Massive Particles (WIMPs) are among the main candidates for the relic dark ma...
We study the process of dark matter particles scattering off He-3,He-4 with nuclear wave functions c...
International audienceWe examine the predictions for both the spin dependent and spin independentdir...
We investigate the reconstruction capabilities of Dark Matter mass and spin-independent crosssection...
Identifying the true theory of dark matter depends crucially on accurately characterizing interactio...
We examine the effect of nuclear response functions, as laid out by Fitzpatrick et al. [J. Cosmol. A...
In this contribution we report on quantification of theoretical uncertainties in nuclear matrix elem...
We update our exploration of the MSSM parameter space at the weak scale where new accelerator and co...
We study the impact of the assumed velocity distribution of galactic dark matter particles on the in...
All attempts to directly detect particle dark matter (DM) scattering on nuclei suffer from the parti...
We study the effect that uncertainties in the nuclear spin-dependent structure functions have in the...
The standard interpretation of direct-detection limits on dark matter involves particular assumption...
We review the calculation of spin-dependent matrix elements relevant to scattering of weakly interac...
International audienceWe investigate the reconstruction capabilities of the dark matter mass and spi...
Following the construction of the general effective theory for dark matter direct detection in [1], ...
The Weakly Interacting Massive Particles (WIMPs) are among the main candidates for the relic dark ma...
We study the process of dark matter particles scattering off He-3,He-4 with nuclear wave functions c...
International audienceWe examine the predictions for both the spin dependent and spin independentdir...
We investigate the reconstruction capabilities of Dark Matter mass and spin-independent crosssection...
Identifying the true theory of dark matter depends crucially on accurately characterizing interactio...
We examine the effect of nuclear response functions, as laid out by Fitzpatrick et al. [J. Cosmol. A...
In this contribution we report on quantification of theoretical uncertainties in nuclear matrix elem...
We update our exploration of the MSSM parameter space at the weak scale where new accelerator and co...
We study the impact of the assumed velocity distribution of galactic dark matter particles on the in...
All attempts to directly detect particle dark matter (DM) scattering on nuclei suffer from the parti...