Prospects for High-Elevation Radio Detection of >100 PeV Tau Neutrinos
arXiv:2004.12718 · doi:10.1088/1475-7516/2020/11/065
Abstract
Tau neutrinos are expected to comprise roughly one third of both the astrophysical and cosmogenic neutrino flux, but currently the flavor ratio is poorly constrained and the expected flux at energies above eV is low. We present a detector concept aimed at measuring the diffuse flux of tau neutrinos in this energy range via a high-elevation mountaintop detector using the radio technique. The detector searches for radio signals from upgoing air showers generated by Earth-skimming tau neutrinos. Signals from several antennas in a compact array are coherently summed at the trigger level, permitting not only directional masking of anthropogenic backgrounds, but also a low trigger threshold. This design takes advantage of both the large viewing area available at high-elevation sites and the nearly full duty cycle available to radio instruments. We present trade studies that consider the station elevation, frequency band, number of antennas in the array, and the trigger threshold to develop a highly efficient station design. Such a mountaintop detector can achieve a factor of ten improvement in acceptance over existing instruments with 100 independent stations. With 1000 stations and three years of observation, it can achieve a sensitivity to an integrated flux of GeV cm sr s, in the range of the expected flux of all-flavor cosmogenic neutrinos assuming a pure iron cosmic-ray composition.
26 pages, 11 figures
References in corpus (13)
- An Introduction to PYTHIA 8.2
- Observation and Characterization of a Cosmic Muon Neutrino Flux from the Northern Hemisphere using six years of IceCube data
- Depth of Maximum of Air-Shower Profiles at the Pierre Auger Observatory: Measurements at Energies above 10^17.8 eV
- Cosmogenic Neutrinos: parameter space and detectabilty from PeV to ZeV
- The Antarctic Impulsive Transient Antenna Ultra-high Energy Neutrino Detector Design, Performance, and Sensitivity for 2006-2007 Balloon Flight
- Radio detection of air showers with the ARIANNA experiment on the Ross Ice Shelf
- Constraints on the ultra-high energy cosmic neutrino flux from the fourth flight of ANITA
- A Comprehensive Approach to Tau-Lepton Production by High-Energy Tau Neutrinos Propagating Through Earth
- The TIANSHAN Radio Experiment for Neutrino Detection
- Astrophysics Uniquely Enabled by Observations of High-Energy Cosmic Neutrinos
- The radio emission pattern of air showers as measured with LOFAR - a tool for the reconstruction of the energy and the shower maximum
- A search for IceCube events in the direction of ANITA neutrino candidates
- Radio interferometry applied to the observation of cosmic-ray induced extensive air showers
Cited by in corpus (23)
- Dark Matter Annihilation to Neutrinos
- The Payload for Ultrahigh Energy Observations (PUEO): A White Paper
- Snowmass White Paper: Beyond the Standard Model effects on Neutrino Flavor
- Tau Neutrinos in the Next Decade: from GeV to EeV
- Probing New Physics at Future Tau Neutrino Telescopes
- Design and Initial Performance of the Prototype for the BEACON Instrument for Detection of Ultrahigh Energy Particles
- A low-threshold ultrahigh-energy neutrino search with the Askaryan Radio Array
- Detector Requirements for Model-Independent Measurements of Ultrahigh Energy Neutrino Cross Sections
- Analysis of a Tau Neutrino Origin for the Near-Horizon Air Shower Events Observed by the Fourth Flight of the Antarctic Impulsive Transient Antenna (ANITA)
- High-Energy and Ultra-High-Energy Neutrinos from Primordial Black Holes
- Near-future discovery of point sources of ultra-high-energy neutrinos
- Tau Appearance from High-Energy Neutrino Interactions
- High-Energy Neutrino Emission from Espresso-Reaccelerated Ions in Jets of Active Galactic Nuclei
- The Radar Echo Telescope for Cosmic Rays: Pathfinder Experiment for a Next-Generation Neutrino Observatory
- Ultrahigh-energy neutrino searches using next-generation gravitational wave detectors at radio neutrino detectors: GRAND, IceCube-Gen2 Radio, and RNO-G
- Double and multiple bangs at tau neutrino telescopes: A novel probe of sphalerons with cosmogenic neutrinos
- Two-detector flavor sensitivity to ultra-high-energy cosmic neutrinos
- Radio wavefront of very inclined extensive air-showers: a simulation study for extended and sparse radio arrays
- Observational strategies for ultrahigh-energy neutrinos: the importance of deep sensitivity for detection and astronomy
- Sensitivity of BEACON to Ultra-High Energy Diffuse and Transient Neutrinos
- Status and Perspectives of Neutrino Physics
- Radio Detection of Ultra-high Energy Cosmic Rays with Low Lunar Orbiting SmallSats
- Particle Astrophysics with High and Ultrahigh Energy Neutrinos