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The ARIANNA experiment is an Askaryan radio detector designed to measure high-energy neutrino induced cascades within the Antarctic ice. Ultra-high-energy neutrinos above $10^{16}$ eV have an extremely low flux, so experimental data…

The Cherenkov Telescope Array Observatory (CTAO) represents the next-generation gamma-ray observatory and will operate for several decades. It will be particularly suited to analyse transients and variable phenomena, which will trigger…

The Antarctic Ross Ice Shelf Antenna Neutrino Array (ARIANNA) is a high-energy neutrino detector designed to record the Askaryan electric field signature of cosmogenic neutrino interactions in ice. To understand the inherent radio-frequency…

Instrumentation and Methods for Astrophysics · Physics 2014-10-21 S. W. Barwick , E. C. Berg , D. Z. Besson , J. C. Hanson , S. R. Klein , S. A. Kleinfelder , M. Piasecki , K. Ratzlaff , C. Reed , M. Roumi , T. Stezelberger , J. Tatar , J. Walker , R. Young , L. Zou

The detection of high energy neutrinos ($10^{15}-10^{20}$ eV or $1-10^{5}$ PeV) is an important step toward understanding the most energetic cosmic accelerators and would enable tests of fundamental physics at energy scales that cannot…

Instrumentation and Methods for Astrophysics · Physics 2016-05-12 A. G. Vieregg , K. Bechtol , A. Romero-Wolf

The Surface Array Enhancement of the IceCube Neutrino Observatory is set to equip the existing surface cosmic-ray array of ice-Cherenkov detectors, IceTop, with radio antennas and scintillation detectors. This can lower the energy threshold…

High Energy Astrophysical Phenomena · Physics 2025-07-03 Megha Venugopal

The lunar Askaryan technique, which involves searching for Askaryan radio pulses from particle cascades in the outer layers of the Moon, is a method for using the lunar surface as an extremely large detector of ultra-high-energy particles.…

At the IceCube Neutrino Observatory, a Surface Array Enhancement is planned, consisting of 32 hybrid stations, placed within the current IceTop footprint. This surface enhancement will considerably increase the detection sensitivity to…

High Energy Astrophysical Phenomena · Physics 2021-07-22 Marie Oehler , Roxanne Turcotte-Tardif

The detection of ultra-high energy (UHE, >10 PeV) neutrinos via detectors designed to utilize the Askaryan effect has been a long-time goal of the astroparticle physics community. The Askaryan effect describes radio-frequency (RF) radiation…

High Energy Astrophysical Phenomena · Physics 2022-06-22 Jordan C. Hanson , Raymond Hartig

The next generation neutrino telescope, IceCube-Gen2, will be sensitive to the astrophysical and cosmogenic flux of neutrinos across a broad energy range, from the TeV to the EeV scale. The planned design includes 8 cubic kilometers of ice…

High Energy Astrophysical Phenomena · Physics 2025-07-11 Christian Glaser

The Genetically Evolved NEutrino Telescopes for Improved Sensitivity, or GENETIS, project seeks to optimize detectors in physics for science outcomes in high dimensional parameter spaces. In this project, we designed an antenna using a…

Instrumentation and Methods for Astrophysics · Physics 2021-12-07 J. Rolla , A. Machtay , A. Patton , W. Banzhaf , A. Connolly , R. Debolt , L. Deer , E. Fahimi , E. Ferstle , P. Kuzma , C. Pfendner , B. Sipe , K. Staats , S. A. Wissel

The ARIANNA experiment seeks to observe the diffuse flux of neutrinos in the 10^8 - 10^10 GeV energy range using a grid of radio detectors at the surface of the Ross Ice Shelf of Antarctica. The detector measures the coherent Cherenkov…

The ARIANNA experiment is an Askaryan detector designed to record radio signals induced by neutrino interactions in the Antarctic ice. Because of the low neutrino flux at high energies ($E > 10^{16} $), the physics output is limited by…

The ARIANNA experiment aims to detect the radio signals of cosmogenic neutrinos. It is running in its pilot phase on the Ross Ice-shelf, and one station has been installed at South Pole. The ARIANNA concept is based on installing high-gain…

Instrumentation and Methods for Astrophysics · Physics 2019-10-23 Anna Nelles

A surface array of radio antennas will enhance the performance of the IceTop array and enable new, complementary science goals. First, the accuracy for cosmic-ray air showers will be increased since the radio array provides a calorimetric…

Instrumentation and Methods for Astrophysics · Physics 2019-09-25 Frank G. Schröder

In 2013 the IceCube collaboration announced the discovery of a cosmic neutrino flux up to PeV energies, validating neutrino astronomy as the next promising observational technique to explore the high-energy Universe. The neutrino community…

High Energy Physics - Experiment · Physics 2019-08-27 S. Toscano , P. Coppin , K. D. de Vries , N. van Eijndhoven , J. A. Aguilar

The TRISTAN detector is an upgrade to the KATRIN experiment to enable a differential measurement of the tritium $\beta$-decay spectrum to search for the experimental signature of keV scale sterile neutrinos. The TRISTAN detector upgrade…

Experimental efforts to measure neutrinos by radio-frequency (RF) signals resulting from neutrino interactions in-ice have intensified over the last decade. Recent calculations indicate that one may dramatically improve the sensitivity of…

Instrumentation and Methods for Astrophysics · Physics 2017-01-16 R. Alvarez , D. Z. Besson , I. Bikov , J. C. Hanson , A. M. Johannesen , J. Macy , S. Prohira , J. Stockham , M. Stockham , Al. Zheng , Am. Zheng

The IceCube Neutrino Observatory at the geographic South Pole has reached a number of milestones in the field of neutrino astrophysics. The achievements of IceCube include the discovery of a high-energy astrophysical neutrino flux, and the…

High Energy Astrophysical Phenomena · Physics 2019-08-27 Aya Ishihara

Interest in Radio-based detection schemes for ultra-high energy cosmic rays (UHECR) has surged in recent years, owing to the potentially very low cost/detection ratio. The method of radio-frequency (RF) scatter has been proposed as…

Instrumentation and Methods for Astrophysics · Physics 2018-04-04 S Prohira , D Besson , S Kunwar , K Ratzlaff , R Young