Updated Results from the RICE Experiment and Future Prospects for Ultra-High Energy Neutrino Detection at the South Pole
arXiv:1106.1164 · doi:10.1103/PhysRevD.85.062004
Abstract
The RICE experiment seeks observation of ultra-high energy (UHE; >100 PeV) neutrinos interacting in Antarctic ice, by measurement of the radiowavelength Cherenkov radiation resulting from the collision of a neutrino with an ice molecule. RICE was initiated in 1999 as a first-generation prototype for an eventual, large-scale in-ice UHE neutrino detector. Herein, we present updated limits on the diffuse UHE neutrino flux, based on twelve years of data taken between 1999 and 2010. We find no convincing neutrino candidates, resulting in 95% confidence-level model-dependent limits on the flux which improve on our previous (2006) results by a factor of two. We also report on ice properties' studies, including observation of radiowave reflections from layers internal to the ice sheet. We observe correlations of these reflections with the local ice flow direction, and also qualitatively verify the expected reduction in radio frequency ice transparency with increasing depth/temperature. A new experimental initiative (the Askaryan Radio Array, ARA) commenced at South Pole in 2010-11 will improve the RICE sensitivity (per unit time) by approximately two orders of magnitude.
version accepted for publication in Phys. Rev. D
References in corpus (13)
- Calculation of atmospheric neutrino flux using the interaction model calibrated with atmospheric muon data
- Prompt neutrino fluxes from atmospheric charm
- Cosmogenic Neutrinos: parameter space and detectabilty from PeV to ZeV
- Observational Constraints on the Ultra-high Energy Cosmic Neutrino Flux from the Second Flight of the ANITA Experiment
- Erratum: Observational Constraints on the Ultra-high Energy Cosmic Neutrino Flux from the Second Flight of the ANITA Experiment
- The Antarctic Impulsive Transient Antenna Ultra-high Energy Neutrino Detector Design, Performance, and Sensitivity for 2006-2007 Balloon Flight
- Advanced functionality for radio analysis in the Offline software framework of the Pierre Auger Observatory
- Practical and accurate calculations of Askaryan radiation
- An upper limit on the electron-neutrino flux from the HiRes detector
- A prototype station for ARIANNA: a detector for cosmic neutrinos
- Relativistic Magnetic Monopole Flux Constraints from RICE
- Limits on the Transient Ultra-High Energy Neutrino Flux from Gamma-Ray Bursts (GRB) Derived from RICE Data
- Radiodetection of Cosmic Ray Extensive Air Showers
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