First limits on WIMP nuclear recoil signals in ZEPLIN-II: a two phase xenon detector for dark matter detection
arXiv:astro-ph/0701858 · doi:10.1016/j.astropartphys.2007.06.002
Abstract
Results are presented from the first underground data run of ZEPLIN-II, a 31 kg two phase xenon detector developed to observe nuclear recoils from hypothetical weakly interacting massive dark matter particles. Discrimination between nuclear recoils and background electron recoils is afforded by recording both the scintillation and ionisation signals generated within the liquid xenon, with the ratio of these signals being different for the two classes of event. This ratio is calibrated for different incident species using an AmBe neutron source and Co-60 gamma-ray sources. From our first 31 live days of running ZEPLIN-II, the total exposure following the application of fiducial and stability cuts was 225 kgxdays. A background population of radon progeny events was observed in this run, arising from radon emission in the gas purification getters, due to radon daughter ion decays on the surfaces of the walls of the chamber. An acceptance window, defined by the neutron calibration data, of 50% nuclear recoil acceptance between 5 keVee and 20 keVee, had an observed count of 29 events, with a summed expectation of 28.6+/-4.3 gamma-ray and radon progeny induced background events. These figures provide a 90% c.l. upper limit to the number of nuclear recoils of 10.4 events in this acceptance window, which converts to a WIMP-nucleon spin-independent cross-section with a minimum of 6.6x10^-7 pb following the inclusion of an energy dependent, calibrated, efficiency. A second run is currently underway in which the radon progeny will be eliminated, thereby removing the background population, with a projected sensitivity of 2x10^-7 pb for similar exposures as the first run.
38 Pages, 16 Figures, (v2: corrected table 2 description)
References in corpus (1)
Cited by in corpus (44)
- Hadronic Uncertainties in the Elastic Scattering of Supersymmetric Dark Matter
- Liquid noble gas detectors for low energy particle physics
- Inelastic Dark Matter in Light of DAMA/LIBRA
- Results from the First Science Run of the ZEPLIN-III Dark Matter Search Experiment
- Characterising dark matter searches at colliders and direct detection experiments: Vector mediators
- A Next-Generation Liquid Xenon Observatory for Dark Matter and Neutrino Physics
- Commissioning Run of the CRESST-II Dark Matter Search
- Candidates for Inelastic Dark Matter
- Dark Matter Candidates - Axions, Neutralinos, Gravitinos, and Axinos
- The Caustic Ring Model of the Milky Way Halo
- Observation of Anti-correlation between Scintillation and Ionization for MeV Gamma-Rays in Liquid Xenon
- The XENONnT Dark Matter Experiment
- Nuclear recoil energy scale in liquid xenon with application to the direct detection of dark matter
- Resonant Dark Matter
- Dark Matter Capture in the First Stars: a Power Source and Limit on Stellar Mass
- Strategies for Determining the Nature of Dark Matter
- Light Higgses at the Tevatron and at the LHC and Observable Dark Matter in SUGRA and D Branes
- Measurement of single electron emission in two-phase xenon
- The ArDM Liquid Argon Time Projection Chamber at the Canfranc Underground Laboratory: a ton-scale detector for Dark Matter Searches
- A coherent understanding of low-energy nuclear recoils in liquid xenon
- Phenomenology of GUT-less Supersymmetry Breaking
- Low Background Gamma Spectroscopy at the Boulby Underground Laboratory
- Direct Detection of Dark Matter -- APPEC Committee Report
- Measurements of neutrons produced by high-energy muons at the Boulby Underground Laboratory
- Limits on spin-dependent WIMP-nucleon cross-sections from the first ZEPLIN-II data
- Projected sensitivities of the LUX-ZEPLIN (LZ) experiment to new physics via low-energy electron recoils
- Operation of a Thick Gas Electron Multiplier (THGEM) in Ar, Xe and Ar-Xe
- XAX: a multi-ton, multi-target detection system for dark matter, double beta decay and pp solar neutrinos
- The ZEPLIN-III Anti-Coincidence Veto Detector
- Preparation of Neutron-activated Xenon for Liquid Xenon Detector Calibration
- Performance of the veto detector incorporated into the ZEPLIN-III experiment
- Panglossian Prospects for Detecting Neutralino Dark Matter in Light of Natural Priors
- The XLZD Design Book: Towards the Next-Generation Liquid Xenon Observatory for Dark Matter and Neutrino Physics
- What it takes to measure a fundamental difference between dark matter and baryons: the halo velocity anisotropy
- Discovery of underground argon with low level of radioactive 39Ar and possible applications to WIMP dark matter detectors
- Hierarchies of Susy Splittings and Invisible Photinos as Dark Matter
- Direct Detection of Cold Dark Matter
- Dual-Phase Liquid Xenon Detectors for Dark Matter Searches
- Low-Energy (<10 keV) Electron Ionization and Recombination Model for a Liquid Argon Detector
- The ZEPLIN II dark matter detector: data acquisition system and data reduction
- A New Analysis Method for WIMP searches with Dual-Phase Liquid Xe TPCs
- Direct WIMP identification: Physics performance of a segmented noble-liquid target immersed in a Gd-doped water veto
- A CF3I-based SDD Prototype for Spin-independent Dark Matter Searches
- Heavy Scalar Dark Matter