We present nuclear structure factors that describe the generalized spin-independent coupling of weakly interacting massive particles (WIMPs) to nuclei. Our results are based on state-of-the-art nuclear structure calculations using the large-scale nuclear shell model. Starting from quark- and gluon-level operators, we consider all possible coherently enhanced couplings of spin-1/2 and spin-0 WIMPs to one and two nucleons up to third order in chiral effective field theory. This includes a comprehensive discussion of the structure factors corresponding to the leading two-nucleon currents covering, for the first time, the contribution of spin-2 operators. We provide results for the most relevant nuclear targets considered in present and planned...
Non-relativistic effective field theory (NREFT) is one approach used for describing the interaction ...
The Large Underground Xenon (LUX) dark matter search was a 250-kg active mass dual-phase time projec...
In the last decade direct detection Dark Matter (DM) experiments have increased enormously their sen...
Spin-dependent elastic scattering of weakly interacting massive dark matter particles (WIMP) off nuc...
The standard interpretation of direct-detection limits on dark matter involves particular assumption...
A weakly interacting massive particle (WIMP) is perhaps the most promising candidate for the dark ma...
We study the effect that uncertainties in the nuclear spin-dependent structure functions have in the...
Chiral effective field theory allows one to calculate the response of few-nucleon systems to externa...
The cross section for coherent elastic neutrino-nucleus scattering (CEνNS) depends on the response o...
AbstractThe HDMS (Heidelberg dark matter search) setup at LNGS, operates the first enriched 73Ge det...
We study the process of dark matter particles scattering off He-3,He-4 with nuclear wave functions c...
We perform a generalized analysis of data from WIMP search experiments for pointlike WIMPs of arbitr...
11 pages, 6 figuresThe Large Underground Xenon (LUX) dark matter search was a 250-kg active mass du...
We perform calculations of structure functions for elastic and inelastic spin-dependent scattering o...
We show how to avoid unnecessary and uncontrolled assumptions usually made in the literature about s...
Non-relativistic effective field theory (NREFT) is one approach used for describing the interaction ...
The Large Underground Xenon (LUX) dark matter search was a 250-kg active mass dual-phase time projec...
In the last decade direct detection Dark Matter (DM) experiments have increased enormously their sen...
Spin-dependent elastic scattering of weakly interacting massive dark matter particles (WIMP) off nuc...
The standard interpretation of direct-detection limits on dark matter involves particular assumption...
A weakly interacting massive particle (WIMP) is perhaps the most promising candidate for the dark ma...
We study the effect that uncertainties in the nuclear spin-dependent structure functions have in the...
Chiral effective field theory allows one to calculate the response of few-nucleon systems to externa...
The cross section for coherent elastic neutrino-nucleus scattering (CEνNS) depends on the response o...
AbstractThe HDMS (Heidelberg dark matter search) setup at LNGS, operates the first enriched 73Ge det...
We study the process of dark matter particles scattering off He-3,He-4 with nuclear wave functions c...
We perform a generalized analysis of data from WIMP search experiments for pointlike WIMPs of arbitr...
11 pages, 6 figuresThe Large Underground Xenon (LUX) dark matter search was a 250-kg active mass du...
We perform calculations of structure functions for elastic and inelastic spin-dependent scattering o...
We show how to avoid unnecessary and uncontrolled assumptions usually made in the literature about s...
Non-relativistic effective field theory (NREFT) is one approach used for describing the interaction ...
The Large Underground Xenon (LUX) dark matter search was a 250-kg active mass dual-phase time projec...
In the last decade direct detection Dark Matter (DM) experiments have increased enormously their sen...