Zurich Open Repository and Archive (University of Zurich) · 2010 · 37 citations · 24 references
A difficult task with many particle detectors focusing on interactions below ∼100 keV is to perform a calibration in the appropriate energy range that adequately probes all regions of the detector. Because detector response can vary greatly in various locations within the device, a spatially uniform calibration is important. We present a new method for calibration of liquid xenon (LXe) detectors, using the short-lived K83mr. This source has transitions at 9.4 and 32.1 keV, and as a noble gas like Xe, it disperses uniformly in all regions of the detector. Even for low source activities, the existence of the two transitions provides a method of identifying the decays that is free of background. We find that at decreasing energies, the LXe light yield increases, while the amount of electric field quenching is diminished. Additionally, we show that if any long-lived radioactive backgrounds are introduced by this method, they will present less than 67×10−6 events kg−1 day−1 keV−1 in the next generation of LXe dark matter direct detection searches.
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Particle dark matter: evidence, candidates and constraints
Gianfranco Bertone, Dan Hooper, Joseph Silk · Physics Reports · 2004 · 4.7K citations · Full text
Engineering, Physics, Cosmology +6
Gerard Jungman, Marc Kamionkowski, K. Griest · Physics Reports · 1996 · 3.9K citations · Full text
First Results from the XENON10 Dark Matter Experiment at the Gran Sasso National Laboratory
J. Angle, E. Aprile, F. Arneodo et al. · Physical Review Letters · 2008 · 634 citations
ALEPH: A detector for electron-positron annihilations at LEP
D. Décamp, B. Deschizeaux, J.-P. Lees et al. · Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment · 1990 · 492 citations · Full text
Physics, Electron-positron Annihilations, Natural Sciences +3