activity
20072013
most citedFirst results from the LUX dark matter experiment at the Sanford Underground Research Facility

1.6k citations · 2.1k across the 2 of their papers we have counts for

collaborators

8 papers

astro-ph.CO2013★ 1.6k cited

First results from the LUX dark matter experiment at the Sanford Underground Research Facility

LUX Collaboration, D. S. Akerib, H. M. Araujo +100

The Large Underground Xenon (LUX) experiment, a dual-phase xenon time-projection chamber operating at the Sanford Underground Research Facility (Lead, South Dakota), was cooled and…

astro-ph.CO2011★ 519 cited

A search for light dark matter in XENON10 data

J. Angle, E. Aprile, F. Arneodo +34

We report results of a search for light (<10 GeV) particle dark matter with the XENON10 detector. The event trigger was sensitive to a single electron, with the analysis threshold…

astro-ph.IM2010

Design and Performance of the XENON10 Dark Matter Experiment

E. Aprile, J. Angle, F. Arneodo +36

XENON10 is the first two-phase xenon time projection chamber (TPC) developed within the XENON dark matter search program. The TPC, with an active liquid xenon (LXe) mass of about 1…

astro-ph.CO2009

Constraints on inelastic dark matter from XENON10

J. Angle, E. Aprile, F. Arneodo +34

It has been suggested that dark matter particles which scatter inelastically from detector target nuclei could explain the apparent incompatibility of the DAMA modulation signal (i…

astro-ph.IM2009

Scintillation Pulse Shape Discrimination in a Two-Phase Xenon Time Projection Chamber

J. Kwong, P. Brusov, T. Shutt +3

The energy and electric field dependence of pulse shape discrimination in liquid xenon have been measured in a 10 gm two-phase xenon time projection chamber. We have demonstrated t…

astro-ph2008

The scintillation and ionization yield of liquid xenon for nuclear recoils

P. Sorensen, A. Manzur, C. E. Dahl +34

XENON10 is an experiment designed to directly detect particle dark matter. It is a dual phase (liquid/gas) xenon time-projection chamber with 3D position imaging. Particle interact…