Reconstruction of potential ultra-high-energy (UHE) neutrino events at the Askaryan Radio Array (ARA) is complicated by the variable index of refraction of South Pole ice, leading to curved radio signal paths from the interaction vertex. Using a spline table framework for fast raytracing approximation, we perform a GPU-accelerated interferometric reconstruction of the event vertex. We also demonstrate how use of both direct and reflected/refracted radio signals can allow reconstruction of the distance to the interaction vertex, an important step towards neutrino energy reconstruction
Since summer 2021, the Radio Neutrino Observatory in Greenland (RNO-G) is searching for astrophysica...
Many neutrino interactions measured by the IceCube Neutrino Observatory produce only hadronic shower...
The reconstruction of event-level information, such as the direction or energy of a neutrino interac...
Reconstruction of potential ultra-high-energy (UHE) neutrino events at the Askaryan Radio Array (ARA...
The Askaryan Radio Array (ARA) is a neutrino telescope array under phased deployment near the South ...
Ultra high energy neutrinos (Eν > 1016.5eV) are efficiently measured via radio signals following ...
The IceCube Neutrino observatory, with 5160 sensors submerged in Antarica's glacial ice, collects da...
Simulations have demonstrated that high-energy neutrinos (E > 1017 eV) are detected cost-efficien...
Sensitivity to ultra-high-energy neutrinos (E > 17 eV) can be obtained cost-efficiently by exploi...
Detection of few-GeV atmospheric neutrinos is made possible by the DeepCore infill array to the IceC...
The sources of ultra-high energy (UHE) cosmic rays, which can have energies up to 1020 eV, remain a ...
A study into the reconstruction of cascade like events in the IceCube neutrino detector was performe...
In-ice radio detectors are a promising tool for the discovery of EeV neutrinos. For astrophysics, th...
The emerging field of radio based neutrino astronomy holds promise in answering long lasting questio...
The detection of high-energy neutrinos in the EeV range requires new detection techniques in order t...
Since summer 2021, the Radio Neutrino Observatory in Greenland (RNO-G) is searching for astrophysica...
Many neutrino interactions measured by the IceCube Neutrino Observatory produce only hadronic shower...
The reconstruction of event-level information, such as the direction or energy of a neutrino interac...
Reconstruction of potential ultra-high-energy (UHE) neutrino events at the Askaryan Radio Array (ARA...
The Askaryan Radio Array (ARA) is a neutrino telescope array under phased deployment near the South ...
Ultra high energy neutrinos (Eν > 1016.5eV) are efficiently measured via radio signals following ...
The IceCube Neutrino observatory, with 5160 sensors submerged in Antarica's glacial ice, collects da...
Simulations have demonstrated that high-energy neutrinos (E > 1017 eV) are detected cost-efficien...
Sensitivity to ultra-high-energy neutrinos (E > 17 eV) can be obtained cost-efficiently by exploi...
Detection of few-GeV atmospheric neutrinos is made possible by the DeepCore infill array to the IceC...
The sources of ultra-high energy (UHE) cosmic rays, which can have energies up to 1020 eV, remain a ...
A study into the reconstruction of cascade like events in the IceCube neutrino detector was performe...
In-ice radio detectors are a promising tool for the discovery of EeV neutrinos. For astrophysics, th...
The emerging field of radio based neutrino astronomy holds promise in answering long lasting questio...
The detection of high-energy neutrinos in the EeV range requires new detection techniques in order t...
Since summer 2021, the Radio Neutrino Observatory in Greenland (RNO-G) is searching for astrophysica...
Many neutrino interactions measured by the IceCube Neutrino Observatory produce only hadronic shower...
The reconstruction of event-level information, such as the direction or energy of a neutrino interac...