The LUX detector is currently in operation at the Davis Campus at the 4850’ level of the Sanford Underground Research Facility (SURF) in Lead, SD to directly search for WIMP dark matter. Knowing the type and rate of backgrounds is critical in a rare, low energy event search, and LUX was designed, constructed, and deployed to mitigate backgrounds, both internal and external. An important internal background are decays of radon and its daughters. These consist of alpha decays, which are easily tagged and are a tracer of certain backgrounds, and beta decays, some of which are not as readily tagged and present a background for the WIMP search. We report on studies of alpha decay and discuss implications for the WIMP search.Peer Reviewe
Low-pressure gas Time Projection Chambers being developed for directional dark matter searches offer...
The Large Underground Xenon (LUX) dark matter search was a 250-kg active mass dual-phase time projec...
Astrophysical and cosmological observations indicate that the universe is filled with nonluminous da...
AbstractThe LUX detector is currently in operation at the Davis Campus at the 4850’ level of the San...
The LUX detector is currently in operation at the Davis Campus at the 4850' level of the Sanford Und...
The Large Underground Xenon (LUX) dark matter experiment aims to detect rare low-energy interactions...
We present the status and prospects of the LUX experiment, which employs approximately 300 kg of two...
The existence of dark matter is now supported by a wide range of physical observations, ranging from...
AbstractWe present the status and prospects of the LUX experiment, which employs approximately 300kg...
We report constraints on spin-independent weakly interacting massive particle (WIMP)-nucleon scatter...
LUX (Large Underground Xenon) is a dark matter direct detection experiment deployed at the 4850' lev...
Although there is considerable evidence for the existence of dark matter, which makes up the majorit...
Weakly Interacting Massive Particle (WIMP) remains one of the most promising dark matter candidates....
The LUX-ZEPLIN experiment recently reported limits on WIMP-nucleus interactions from its initial sci...
Current observations from astrophysics indicate the presence of dark matter, an invisible form of ma...
Low-pressure gas Time Projection Chambers being developed for directional dark matter searches offer...
The Large Underground Xenon (LUX) dark matter search was a 250-kg active mass dual-phase time projec...
Astrophysical and cosmological observations indicate that the universe is filled with nonluminous da...
AbstractThe LUX detector is currently in operation at the Davis Campus at the 4850’ level of the San...
The LUX detector is currently in operation at the Davis Campus at the 4850' level of the Sanford Und...
The Large Underground Xenon (LUX) dark matter experiment aims to detect rare low-energy interactions...
We present the status and prospects of the LUX experiment, which employs approximately 300 kg of two...
The existence of dark matter is now supported by a wide range of physical observations, ranging from...
AbstractWe present the status and prospects of the LUX experiment, which employs approximately 300kg...
We report constraints on spin-independent weakly interacting massive particle (WIMP)-nucleon scatter...
LUX (Large Underground Xenon) is a dark matter direct detection experiment deployed at the 4850' lev...
Although there is considerable evidence for the existence of dark matter, which makes up the majorit...
Weakly Interacting Massive Particle (WIMP) remains one of the most promising dark matter candidates....
The LUX-ZEPLIN experiment recently reported limits on WIMP-nucleus interactions from its initial sci...
Current observations from astrophysics indicate the presence of dark matter, an invisible form of ma...
Low-pressure gas Time Projection Chambers being developed for directional dark matter searches offer...
The Large Underground Xenon (LUX) dark matter search was a 250-kg active mass dual-phase time projec...
Astrophysical and cosmological observations indicate that the universe is filled with nonluminous da...