Advancing ARA: the Next-Generation (ARA-Next) DAQ System

Fuente: arXiv
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Autore principale: Giri, Pawan
Natura: Preprint
Pubblicazione: 2025
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author Giri, Pawan
author_facet Giri, Pawan
contents The Askaryan Radio Array (ARA) has been operating at the South Pole for over a decade, searching for ultra-high energy astrophysical and cosmogenic neutrinos using the Askaryan effect. ARA has consistently served as a testbed for innovative trigger designs and advancing electronic upgrades, with ongoing data acquisition (DAQ) improvements over the past 2-3 years and a long-term plan to transition to Radio Frequency System on Chip (RFSoC) technology. This upgrade enables real-time data processing and sophisticated triggers, enhancing efficiency by identifying double pulses from in-ice neutrino interactions, using templates for cosmic rays, searching for real-time coincidences with the IceCube detector observations, and filtering anthropogenic noise through directional analysis. In 2024, two of the five ARA stations received DAQ upgrades, improving the existing electronics, with RFSoC-based DAQ foreseen in the coming years. In this proceedings contribution, recent ARA activities are presented, with emphasis on the planned ARA-Next trigger strategies involving RFSoC technology and the 2024-2025 season upgrades of the existing ATRI-based DAQ system to its revised version.
format Preprint
id arxiv_https___arxiv_org_abs_2509_18368
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Advancing ARA: the Next-Generation (ARA-Next) DAQ System
Giri, Pawan
Instrumentation and Methods for Astrophysics
High Energy Astrophysical Phenomena
The Askaryan Radio Array (ARA) has been operating at the South Pole for over a decade, searching for ultra-high energy astrophysical and cosmogenic neutrinos using the Askaryan effect. ARA has consistently served as a testbed for innovative trigger designs and advancing electronic upgrades, with ongoing data acquisition (DAQ) improvements over the past 2-3 years and a long-term plan to transition to Radio Frequency System on Chip (RFSoC) technology. This upgrade enables real-time data processing and sophisticated triggers, enhancing efficiency by identifying double pulses from in-ice neutrino interactions, using templates for cosmic rays, searching for real-time coincidences with the IceCube detector observations, and filtering anthropogenic noise through directional analysis. In 2024, two of the five ARA stations received DAQ upgrades, improving the existing electronics, with RFSoC-based DAQ foreseen in the coming years. In this proceedings contribution, recent ARA activities are presented, with emphasis on the planned ARA-Next trigger strategies involving RFSoC technology and the 2024-2025 season upgrades of the existing ATRI-based DAQ system to its revised version.
title Advancing ARA: the Next-Generation (ARA-Next) DAQ System
topic Instrumentation and Methods for Astrophysics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2509.18368