Two distinct components of the delayed single electron background signals in liquid xenon emission detectors
arXiv:1711.07025 · doi:10.1088/1748-0221/13/02/P02032
Abstract
Single electron background signals with millisecond timescales are known to follow ionizing events in liquid/gas xenon emission detectors. Due to the long timescale, these signals can present a limiting background to the low-energy threshold of dark matter searches, and prevent discovery-class searches for MeV scale hidden sector dark matter. A systematic study reveals a fast (tau_1) and slow (tau_2) component to the background. The fast component is compatible with electrons which were trapped at the liquid surface, and can be reduced by increasing the electric field. However, the slow component increases linearly with electric field. Hypotheses for the origin of the effect are discussed, and techniques for mitigation are suggested.
v2 includes a more elaborate introduction and a more comprehensive and broad interpretation of the unknown tau_2 component. Data and analysis unchanged from v1
References in corpus (5)
- Results from a search for dark matter in the complete LUX exposure
- First Dark Matter Search Results from the XENON1T Experiment
- New Constraints and Prospects for sub-GeV Dark Matter Scattering off Electrons in Xenon
- Liquid noble gas detectors for low energy particle physics
- Extraction efficiency of drifting electrons in a two-phase xenon time projection chamber
Cited by in corpus (34)
- Dark Matter Search Results from a One TonneYear Exposure of XENON1T
- Light Dark Matter Search with Ionization Signals in XENON1T
- Low-Mass Dark Matter Search with the DarkSide-50 Experiment
- A Next-Generation Liquid Xenon Observatory for Dark Matter and Neutrino Physics
- Emission of Single and Few Electrons in XENON1T and Limits on Light Dark Matter
- SNEWS 2.0: A Next-Generation SuperNova Early Warning System for Multi-messenger Astronomy
- Searches for light dark matter using condensed matter systems
- Investigation of background electron emission in the LUX detector
- Saturated Overburden Scattering and the Multiscatter Frontier: Discovering Dark Matter at the Planck Mass and Beyond
- Sources of Low-Energy Events in Low-Threshold Dark Matter and Neutrino Detectors
- A Dark Matter Interpretation of Excesses in Multiple Direct Detection Experiments
- A First Search for Solar B Neutrino in the PandaX-4T Experiment using Neutrino-Nucleus Coherent Scattering
- First ground-level laboratory test of the two-phase xenon emission detector RED-100
- Simulations of Events for the LUX-ZEPLIN (LZ) Dark Matter Experiment
- Electron extraction efficiency study for dual-phase xenon dark matter experiments
- Sensitivity projections for a dual-phase argon TPC optimized for light dark matter searches through the ionization channel
- The XENON1T Data Acquisition System
- Study and mitigation of spurious electron emission from cathodic wires in noble liquid time projection chambers
- Photoluminescence response of acrylic (PMMA) and polytetrafluoroethylene (PTFE) to ultraviolet light
- Correlated Single- and Few-Electron Backgrounds Milliseconds after Interactions in Dual-Phase Liquid Xenon Time Projection Chambers
- LBECA: A Low Background Electron Counting Apparatus for Sub-GeV Dark Matter Detection
- Proposal of a Geiger-type Single-Phase Liquid Xenon Time Projection Chamber as Potential Detector Technique for Dark Matter Direct Search
- The Electric Field Dependence of Single Electron Emission in the PIXeY Two-Phase Xenon Detector
- Waveform Simulation in PandaX-4T
- Puzzling time properties of proportional electroluminescence in two-phase argon detectors for dark matter searches
- Feasibility Study to use Neutron Capture for an Ultra-low Energy Nuclear-recoil Calibration in Liquid Xenon
- Observation of unusual slow components in electroluminescence signal of two-phase argon detector
- A machine learning-based methodology for pulse classification in dual-phase xenon time projection chambers
- Feasibility of Liquid-phase Xenon Proportional Scintillation for Low-energy Physics
- First results on FHM -- a Floating Hole Multiplier
- Impact of extreme ultraviolet radiation on the scintillation of pure and xenon-doped liquid argon
- Unraveling the puzzle of slow components in gaseous argon of two-phase detectors for dark matter searches using Thick Gas Electron Multiplier
- High-pressure xenon gas time projection chamber with scalable design and its performance at around the Q value of Xe double-beta decay
- Quartz fluorescence backgrounds in xenon particle detectors