Towards Coherent Neutrino Detection Using Low-Background Micropattern Gas Detectors
arXiv:hep-ex/0212034 · doi:10.1109/TNS.2003.818237
Abstract
The detection of low energy neutrinos ( few tens of MeV) via coherent nuclear scattering remains a holy grail of sorts in neutrino physics. This uncontroversial mode of interaction is expected to profit from a sizeable increase in cross section proportional to neutron number squared in the target nucleus, an advantageous feature in view of the small probability of interaction via all other channels in this energy region. A coherent neutrino detector would open the door to many new applications, ranging from the study of fundamental neutrino properties to true "neutrino technology". Unfortunately, present-day radiation detectors of sufficiently large mass ( 1 kg) are not sensitive to sub-keV nuclear recoils like those expected from this channel. The advent of Micropattern Gas Detectors (MPGDs), new technologies originally intended for use in High Energy Physics, may soon put an end to this impasse. We present first tests of MPGDs fabricated with radioclean materials and discuss the approach to assessing their sensitivity to these faint signals. Applications are reviewed, in particular their use as a safeguard against illegitimate operation of nuclear reactors. A first industrial mass production of Gas Electron Multipliers (GEMs) is succinctly described.
Presented at the 2002 IEEE Nuclear Science Symposium and Medical Imaging Conference, Norfolk VA, November 10-16. Submitted to IEEE Tran. Nucl. Sci. Five pages, eight figures
References in corpus (3)
Cited by in corpus (30)
- Dark Energy from Mass Varying Neutrinos
- Large-Mass Ultra-Low Noise Germanium Detectors: Performance and Applications in Neutrino and Astroparticle Physics
- First Measurement of Coherent Elastic Neutrino-Nucleus Scattering on Argon
- Probing new physics with coherent neutrino scattering off nuclei
- Non standard neutrino interactions
- Prospects for measuring coherent neutrino-nucleus elastic scattering at a stopped-pion neutrino source
- Two-Phase Emission Detector for Measuring Coherent Neutrino-Nucleus Scattering
- Exploring low-energy neutrino physics with the Coherent Neutrino Nucleus Interaction Experiment (CONNIE)
- Coherent neutrino-nucleus scattering detection with a CsI[Na] scintillator at the SNS spallation source
- Advances in Cryogenic Avalanche Detectors
- Results of the engineering run of the Coherent Neutrino Nucleus Interaction Experiment (CONNIE)
- Coherent Neutrino Scattering in Dark Matter Detectors
- A Network of Neutral Current Spherical TPC's for Dedicated Supernova Detection
- Detection of reactor antineutrino coherent scattering off nuclei with a two-phase noble gas detector
- Ultra-Low-Energy Germanium Detector for Neutrino-Nucleus Coherent Scattering and Dark Matter Searches
- Probing thermonuclear supernova explosions with neutrinos
- A two-phase argon avalanche detector operated in a single electron counting mode
- Design and Characterization of a Neutron Calibration Facility for the Study of sub-keV Nuclear Recoils
- The MPGD-Based Photon Detectors for the upgrade of COMPASS RICH-1 and beyond
- GEM Operation in Negative Ion Drift Gas Mixtures
- Opportunities for Neutrino Physics at the Spallation Neutron Source (SNS)
- The Thick Gas Electron Multiplier and its derivatives: physics, technologies and applications
- Dedicated Supernova Detection by a Network of Neutral Current Spherical TPC's
- Evolution and Recent Developments of the Gaseous Photon Detectors Technologies
- The high voltage system with pressure and temperature corrections for the novel MPGD-based photon detectors of COMPASS RICH-1
- Nanodiamond photocathodes for MPGD-based single photon detectors at future EIC
- Study of nanodiamond photocathodes for MPGD-based detectors of single photons
- Direct measurements of the properties of Thick-GEM reflective photocathodes
- MPGD-based photon detectors for the upgrade of COMPASS RICH-1 and beyond
- The MPGD-Based Photon Detectors for the upgrade of COMPASS RICH-1