We present the results of a direct detection search for mirror dark matter interactions, using data collected from the Large Underground Xenon experiment during 2013, with an exposure of 95 live-days × 118 kg. Here, the calculations of the mirror electron scattering rate in liquid xenon take into account the shielding effects from mirror dark matter captured within the Earth. Annual and diurnal modulation of the dark matter flux and atomic shell effects in xenon are also accounted for. Having found no evidence for an electron recoil signal induced by mirror dark matter interactions we place an upper limit on the kinetic mixing parameter over a range of local mirror electron temperatures between 0.1 and 0.6 keV. This limit shows significant ...
We present the results of the three-month above-ground commissioning run of the Large Underground Xe...
Weakly interacting massive particles (WIMPs) are a leading candidate for dark matter and are expecte...
Various dark matter models predict annual and diurnal modulations of dark matter interaction rates i...
We present the results of a direct detection search for mirror dark matter interactions, using data ...
The scattering of dark matter (DM) particles with sub-GeV masses off nuclei is difficult to detect u...
Dual-phase xenon detectors, as currently used in direct detection dark matter experiments, have obse...
The Large Underground Xenon (LUX) dark matter search was a 250-kg active mass dual-phase time projec...
This paper presents a novel technique for mitigating electrode backgrounds that limit the sensitivit...
The LUX experiment has performed searches for dark-matter particles scattering elastically on xenon ...
We report constraints on spin-independent weakly interacting massive particle (WIMP)-nucleon scatter...
We present a novel analysis technique for liquid xenon time projection chambers that allows for a lo...
The scattering of dark matter (DM) particles with sub-GeV masses off nuclei is difficult to detect u...
The scattering of dark matter (DM) particles with sub-GeV masses off nuclei is difficult to detect u...
We report results from an extensive set of measurements of the β-decay response in liquid xenon. The...
The Large Underground Xenon experiment (LUX) searches for dark matter using a dual-phase xenon detec...
We present the results of the three-month above-ground commissioning run of the Large Underground Xe...
Weakly interacting massive particles (WIMPs) are a leading candidate for dark matter and are expecte...
Various dark matter models predict annual and diurnal modulations of dark matter interaction rates i...
We present the results of a direct detection search for mirror dark matter interactions, using data ...
The scattering of dark matter (DM) particles with sub-GeV masses off nuclei is difficult to detect u...
Dual-phase xenon detectors, as currently used in direct detection dark matter experiments, have obse...
The Large Underground Xenon (LUX) dark matter search was a 250-kg active mass dual-phase time projec...
This paper presents a novel technique for mitigating electrode backgrounds that limit the sensitivit...
The LUX experiment has performed searches for dark-matter particles scattering elastically on xenon ...
We report constraints on spin-independent weakly interacting massive particle (WIMP)-nucleon scatter...
We present a novel analysis technique for liquid xenon time projection chambers that allows for a lo...
The scattering of dark matter (DM) particles with sub-GeV masses off nuclei is difficult to detect u...
The scattering of dark matter (DM) particles with sub-GeV masses off nuclei is difficult to detect u...
We report results from an extensive set of measurements of the β-decay response in liquid xenon. The...
The Large Underground Xenon experiment (LUX) searches for dark matter using a dual-phase xenon detec...
We present the results of the three-month above-ground commissioning run of the Large Underground Xe...
Weakly interacting massive particles (WIMPs) are a leading candidate for dark matter and are expecte...
Various dark matter models predict annual and diurnal modulations of dark matter interaction rates i...