Spontaneous generation of athermal phonon bursts within bulk silicon causing excess noise, low energy background events and quasiparticle poisoning in superconducting sensors
arXiv:2505.16092 · doi:10.1063/5.0281876
Abstract
Solid state phonon detectors used in the search for dark matter and coherent neutrino nucleus interactions (CENS) require excellent energy resolution (eV-scale or below) and low backgrounds. An unknown source of phonon bursts, the low energy excess (LEE), dominates other above-threshold backgrounds and generates excess shot noise from sub-threshold bursts. In this paper, we measure these phonon bursts for 12 days after cooldown in two nearly identical 1 cm silicon detectors that differ only in the thickness of their substrate (1 mm vs. 4 mm thick). We find that both the channel-correlated shot noise and near-threshold shared LEE relax with time since cooldown. Additionally, both the correlated shot noise and LEE rates scale linearly with substrate thickness. When combined with previous measurements of other silicon phonon detectors with different substrate geometries and mechanical support strategies, these measurements strongly suggest that the dominant source of both above and below threshold LEE is the bulk substrate. By monitoring the relation between bias power and excess phonon shot noise, we estimate that the energy scale for sub-threshold noise events is meV. In our final dataset, we report a world-leading energy resolution of 258.50.4 meV in the 1 mm thick detector. Simple calculations suggest that these silicon substrate phonon bursts are likely a significant source of quasiparticle poisoning in superconducting qubits operated in well shielded and vibration free environments.
11 pages, 15 figures
References in corpus (24)
- Freeze-In Production of FIMP Dark Matter
- The SIMP Miracle
- The SIMPlest Miracle
- Measurement and Control of Quasiparticle Dynamics in a Superconducting Qubit
- Impact of ionizing radiation on superconducting qubit coherence
- Hot non-equilibrium quasiparticles in transmon qubits
- Elastically Decoupling Dark Matter
- New Constraints on Dark Photon Dark Matter with Superconducting Nanowire Detectors in an Optical Haloscope
- Broadband solenoidal haloscope for terahertz axion detection
- Light Dark Matter Search with a High-Resolution Athermal Phonon Detector Operated Above Ground
- Coherent Neutrino Scattering with Low Temperature Bolometers at Chooz Reactor Complex
- EXCESS workshop: Descriptions of rising low-energy spectra
- Phenomenology of ELDER Dark Matter
- Performance of a Large Area Photon Detector For Rare Event Search Applications
- A Stress Induced Source of Phonon Bursts and Quasiparticle Poisoning
- Latest observations on the low energy excess in CRESST-III
- First Limits on Light Dark Matter Interactions in a Low Threshold Two Channel Athermal Phonon Detector from the TESSERACT Collaboration
- Low Energy Backgrounds and Excess Noise in a Two-Channel Low-Threshold Calorimeter
- Performance of a Kinetic Inductance Phonon-Mediated Detector at the NEXUS Cryogenic Facility
- DoubleTES detectors to investigate the CRESST low energy background: results from above-ground prototypes
- Aluminum Relaxation as the Source of Excess Low Energy Events in Low Threshold Calorimeters
- Low-Energy Backgrounds in Solid-State Phonon and Charge Detectors
- A Transition Edge Sensor Operated in Coincidence with a High Sensitivity Athermal Phonon Sensor for Photon Coupled Rare Event Searches
- Spontaneous damage annealing reactions as a possible source of low energy excess in semiconductor detectors