Radio-Frequency Measurements of Coherent Transition and Cherenkov Radiation: Implications for High-Energy Neutrino Detection
arXiv:hep-ex/0004007 · doi:10.1103/PhysRevE.62.8590
Abstract
We report on measurements of 11-18 cm wavelength radio emission from interactions of 15.2 MeV pulsed electron bunches at the Argonne Wakefield Accelerator. The electrons were observed both in a configuration where they produced primarily transition radiation from an aluminum foil, and in a configuration designed for the electrons to produce Cherenkov radiation in a silica sand target. Our aim was to emulate the large electron excess expected to develop during an electromagnetic cascade initiated by an ultra high-energy particle. Such charge asymmetries are predicted to produce strong coherent radio pulses, which are the basis for several experiments to detect high-energy neutrinos from the showers they induce in Antarctic ice and in the lunar regolith. We detected coherent emission which we attribute both to transition and possibly Cherenkov radiation at different levels depending on the experimental conditions. We discuss implications for experiments relying on radio emission for detection of electromagnetic cascades produced by ultra high-energy neutrinos.
updated figure 10; fixed typo in equation 2.2; accepted by PRE
Cited by in corpus (30)
- Observation of the Askaryan Effect: Coherent Microwave Cherenkov Emission from Charge Asymmetry in High Energy Particle Cascades
- Experimental Limit on the Cosmic Diffuse Ultra-high Energy Neutrino Flux
- Constraints on Cosmic Neutrino Fluxes from the ANITA Experiment
- FORTE satellite constraints on ultra-high energy cosmic particle fluxes
- Observations of the Askaryan Effect in Ice
- Detecting Radio Emission from Cosmic Ray Air Showers and Neutrinos with a Digital Radio Telescope
- Accelerator Measurements of the Askaryan effect in Rock Salt: A Roadmap Toward Teraton Underground Neutrino Detectors
- Measurements of the Suitability of Large Rock Salt Formations for Radio Detection of High Energy Neutrinos
- The Large Analog Bandwidth Recorder And Digitizer with Ordered Readout (LABRADOR) ASIC
- First Constraints on the Ultra-High Energy Neutrino Flux from a Prototype Station of the Askaryan Radio Array
- Optimal Radio Window for the Detection of Ultra-High-Energy Cosmic Rays and Neutrinos off the Moon
- Enhanced Cosmological GRB Rates and Implications for Cosmogenic Neutrinos
- Accelerator measurements of magnetically-induced radio emission from particle cascades with applications to cosmic-ray air showers
- Synchrotron Radiation at Radio Frequencies from Cosmic Ray Air Showers
- UHE neutrino searches using a Lunar target: First Results from the RESUN search
- Constraints on the flux of Ultra-High Energy neutrinos from WSRT observations
- Observation of Radar Echoes From High-Energy Particle Cascades
- Radio Detection of High Energy Particles: Coherence Versus Multiple Scales
- Coherent transition radiation from the geomagnetically-induced current in cosmic-ray air showers: Implications for the anomalous events observed by ANITA
- Prospects for radio detection of ultra-high energy cosmic rays and neutrinos
- The cosmic-ray air-shower signal in Askaryan radio detectors
- The ExaVolt Antenna: A Large-Aperture, Balloon-embedded Antenna for Ultra-high Energy Particle Detection
- Prospects for Lunar Satellite Detection of Radio Pulses from Ultrahigh Energy Neutrinos Interacting with the Moon
- A prototype system for detecting the radio-frequency pulse associated with cosmic ray air showers
- Suggestion of Coherent Radio Reflections from an Electron-Beam Induced Particle Cascade
- Constraints on the Ultra-High Energy Neutrino Flux from Gamma-Ray Bursts from a Prototype Station of the Askaryan Radio Array
- Evaluation of Giga-bit Ethernet Instrumentation for SalSA Electronics Readout (GEISER)
- Coherent radio emission from the electron beam sudden appearance
- Observation of In-ice Askaryan Radiation from High-Energy Cosmic Rays
- Picosecond timing of Microwave Cherenkov Impulses from High-Energy Particle Showers Using Dielectric-loaded Waveguides