Results on sub-GeV Dark Matter from a 10 eV Threshold CRESST-III Silicon Detector
arXiv:2212.12513 · doi:10.1103/PhysRevD.107.122003
Abstract
We present limits on the spin-independent interaction cross section of dark matter particles with silicon nuclei, derived from data taken with a cryogenic calorimeter with 0.35 g target mass operated in the CRESST-III experiment. A baseline nuclear recoil energy resolution of eV, currently the lowest reported for macroscopic particle detectors, and a corresponding energy threshold of eV have been achieved, improving the sensitivity to light dark matter particles with masses below 160 MeV/c by a factor of up to 20 compared to previous results. We characterize the observed low energy excess, and we exclude noise triggers and radioactive contaminations on the crystal surfaces as dominant contributions.
8 pages, 5 figures; precised the position of the calibration source in Fig. 1; extended the discussion about the observed energy spectrum; added the DM limit curve to ancillary files. Published in Phys. Rev. D
References in corpus (8)
- The RAVE Survey: Constraining the Local Galactic Escape Speed
- Dark matter production in the early Universe: beyond the thermal WIMP paradigm
- Searching for low-mass dark matter particles with a massive Ge bolometer operated above-ground
- Results on MeV-scale dark matter from a gram-scale cryogenic calorimeter operated above ground
- Commissioning Run of the CRESST-II Dark Matter Search
- EXCESS workshop: Descriptions of rising low-energy spectra
- Testing spin-dependent dark matter interactions with lithium aluminate targets in CRESST-III
- Investigating the sources of low-energy events in a SuperCDMS-HVeV detector
Cited by in corpus (15)
- Low Energy Backgrounds and Excess Noise in a Two-Channel Low-Threshold Calorimeter
- DoubleTES detectors to investigate the CRESST low energy background: results from above-ground prototypes
- Low-Energy Backgrounds in Solid-State Phonon and Charge Detectors
- Dark Matter (H)eats Young Planets
- Improved Modelling of Detector Response Effects in Phonon-based Crystal Detectors used for Dark Matter Searches
- Detector development for the CRESST experiment
- Low-Energy Calibration of SuperCDMS HVeV Cryogenic Silicon Calorimeters Using Compton Steps
- Probing Light Inelastic Dark Matter from Direct Detection
- Dark Matter-Electron Scattering Search Using Cryogenic Light Detectors
- Optimum filter-based analysis for the characterization of a high-resolution magnetic microcalorimeter towards the DELight experiment
- Signal partitioning in superfluid He: a Monte Carlo approach
- High-Dimensional Bayesian Likelihood Normalisation for CRESST's Background Model
- Optimal operation of cryogenic calorimeters through deep reinforcement learning
- Searching for dark matter annihilation in the Sun with the IceCube Upgrade
- Molecular Dynamics Simulations on Nuclear Recoils in Silicon Crystals towards Single Electron-Hole Pair Ionization Yields