Spin-dependent limits from the DRIFT-IId directional dark matter detector

Data are presented from the DRIFT-IId detector operated in the Boulby Underground Science Facility in England. A 0.8 m 3 fiducial volume, containing partial pressures of 30 Torr CS 2 and 10 Torr CF 4, was exposed for a duration of 47.4 live-time days with sufficient passive shielding to provide a ne...

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Main Authors: Daw, E, Fox, JR, Gauvreau, J, Ghag, C, Harmon, L, Gold, M, Lee, E, Loomba, D, Miller, E, Murphy, A, Paling, S, Landers, J, Pipe, M, Pushkin, K, Robinson, M, Snowden-Ifft, D, Spooner, N, Walker, D
Format: Journal article
Language:English
Published: 2012
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author Daw, E
Fox, JR
Gauvreau, J
Ghag, C
Harmon, L
Gold, M
Lee, E
Loomba, D
Miller, E
Murphy, A
Paling, S
Landers, J
Pipe, M
Pushkin, K
Robinson, M
Snowden-Ifft, D
Spooner, N
Walker, D
author_facet Daw, E
Fox, JR
Gauvreau, J
Ghag, C
Harmon, L
Gold, M
Lee, E
Loomba, D
Miller, E
Murphy, A
Paling, S
Landers, J
Pipe, M
Pushkin, K
Robinson, M
Snowden-Ifft, D
Spooner, N
Walker, D
author_sort Daw, E
collection OXFORD
description Data are presented from the DRIFT-IId detector operated in the Boulby Underground Science Facility in England. A 0.8 m 3 fiducial volume, containing partial pressures of 30 Torr CS 2 and 10 Torr CF 4, was exposed for a duration of 47.4 live-time days with sufficient passive shielding to provide a neutron free environment within the detector. The nuclear recoil events seen are consistent with a remaining low-level background from the decay of radon daughters attached to the central cathode of the detector. However, charge from such events must drift across the entire width of the detector, and thus display large diffusion upon reaching the readout planes of the device. Exploiting this feature, it is shown to be possible to reject energy depositions from these Radon Progeny Recoil events while still retaining sensitivity to fiducial-volume nuclear recoil events. The response of the detector is then interpreted, using the F nuclei content of the gas, in terms of sensitivity to proton spin-dependent WIMP-nucleon interactions, displaying a minimum in sensitivity cross section at 1.8 pb for a WIMP mass of 100 GeV/c 2. This sensitivity was achieved without compromising the direction sensitivity of DRIFT. © 2011 Elsevier B.V. All rights reserved.
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spelling oxford-uuid:643ff773-b5b8-4daa-9ae7-6b46c0bedff32022-03-26T18:17:47ZSpin-dependent limits from the DRIFT-IId directional dark matter detectorJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:643ff773-b5b8-4daa-9ae7-6b46c0bedff3EnglishSymplectic Elements at Oxford2012Daw, EFox, JRGauvreau, JGhag, CHarmon, LGold, MLee, ELoomba, DMiller, EMurphy, APaling, SLanders, JPipe, MPushkin, KRobinson, MSnowden-Ifft, DSpooner, NWalker, DData are presented from the DRIFT-IId detector operated in the Boulby Underground Science Facility in England. A 0.8 m 3 fiducial volume, containing partial pressures of 30 Torr CS 2 and 10 Torr CF 4, was exposed for a duration of 47.4 live-time days with sufficient passive shielding to provide a neutron free environment within the detector. The nuclear recoil events seen are consistent with a remaining low-level background from the decay of radon daughters attached to the central cathode of the detector. However, charge from such events must drift across the entire width of the detector, and thus display large diffusion upon reaching the readout planes of the device. Exploiting this feature, it is shown to be possible to reject energy depositions from these Radon Progeny Recoil events while still retaining sensitivity to fiducial-volume nuclear recoil events. The response of the detector is then interpreted, using the F nuclei content of the gas, in terms of sensitivity to proton spin-dependent WIMP-nucleon interactions, displaying a minimum in sensitivity cross section at 1.8 pb for a WIMP mass of 100 GeV/c 2. This sensitivity was achieved without compromising the direction sensitivity of DRIFT. © 2011 Elsevier B.V. All rights reserved.
spellingShingle Daw, E
Fox, JR
Gauvreau, J
Ghag, C
Harmon, L
Gold, M
Lee, E
Loomba, D
Miller, E
Murphy, A
Paling, S
Landers, J
Pipe, M
Pushkin, K
Robinson, M
Snowden-Ifft, D
Spooner, N
Walker, D
Spin-dependent limits from the DRIFT-IId directional dark matter detector
title Spin-dependent limits from the DRIFT-IId directional dark matter detector
title_full Spin-dependent limits from the DRIFT-IId directional dark matter detector
title_fullStr Spin-dependent limits from the DRIFT-IId directional dark matter detector
title_full_unstemmed Spin-dependent limits from the DRIFT-IId directional dark matter detector
title_short Spin-dependent limits from the DRIFT-IId directional dark matter detector
title_sort spin dependent limits from the drift iid directional dark matter detector
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