arXiv · 1404.2253
Background Assay and Rejection in DRIFT
Abstract
The DRIFT-IId dark matter detector is a m$^3$-scale low-pressure TPC with directional sensitivity to WIMP-induced nuclear recoils. Its primary backgrounds were due to alpha decays from contamination on the central cathode. Efforts to reduce these backgrounds led to replacing the 20 \mu m wire central cathode with one constructed from 0.9 \mu m aluminized mylar, which is almost totally transparent to alpha particles. Detailed modeling of the nature and origin of the remaining backgrounds led to an in-situ, ppt-sensitive assay of alpha decay backgrounds from the central cathode. This led to further improvements in the thin-film cathode resulting in over 2 orders of magnitude reduction in backgrounds compared to the wire cathode. Finally, the addition of O$_2$ to CS$_2$ gas was found to produce multiple species of electronegative charge carriers, providing a method to determine the absolute position of nuclear recoils and reject all known remaining backgrounds while retaining a high efficiency for nuclear recoil detection.
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Jeff Brack, Ed Daw, Alexei Dorofeev, Anthony Ezeribe, Jean-Luc Gauvreau, Michael Gold, John Harton, Randy Lafler, Robert Lauer, Eric R. Lee, Dinesh Loomba, John Matthews, Eric H. Miller, Alissa Monte, Alex Murphy, Sean Paling, Nguyen Phan, Steve Sadler, Andrew Scarff, Daniel Snowden-Ifft, Neil Spooner, Sam Telfer, Daniel Walker, Matt Williams, Leonid Yuriev. 2014-04-08. Background Assay and Rejection in DRIFT. https://doi.org/10.1016/j.phpro.2014.12.022
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