The General Antiparticle Spectrometer (GAPS) is a balloon-borne indirect dark matter experiment that was commissioned in Antarctica for the December 24/January 25 launch season. Its primary science goal is the search for light antinuclei in cosmic rays at kinetic energies below 0.25 GeV/n. This energy region is of particular interest for dark matter searches and remains largely unexplored. GAPS promises to yield unprecedented sensitivity for low-energy antideuterons, will measure the low-energy antiproton spectrum with high precision, and will open new discovery space for antihelium. To reach the required sensitivity, the GAPS detector incorporates a new approach for antimatter detection, utilizing a tracker with custom-designed, lithium-drifted Silicon detectors that both capture an incoming antinucleus into an exotic atom and measure the de-excitation X-ray and nuclear annihilation product, together with a fast time-of-flight system, allowing for a high-precision β measurement and trigger. During the past Antarctic season, GAPS performed a pre-flight, instrument testing campaign on the ground. Unfortunately, GAPS was not able to launch in the past season due to the weather. This talk will highlight key results from the Antarctic ground testing campaign and present an outlook for the December 2025/January 2026 Antarctic launch season in which GAPS is scheduled to launch.

(2025). Estimating the performance of the GAPS detector with muon ground testing data from Antarctica . In POS PROCEEDINGS OF SCIENCE. Retrieved from https://hdl.handle.net/10446/319885

Estimating the performance of the GAPS detector with muon ground testing data from Antarctica

Ghislotti L.;Lazzaroni P.;Manghisoni M.;Re V.;Riceputi E.;
2025-01-01

Abstract

The General Antiparticle Spectrometer (GAPS) is a balloon-borne indirect dark matter experiment that was commissioned in Antarctica for the December 24/January 25 launch season. Its primary science goal is the search for light antinuclei in cosmic rays at kinetic energies below 0.25 GeV/n. This energy region is of particular interest for dark matter searches and remains largely unexplored. GAPS promises to yield unprecedented sensitivity for low-energy antideuterons, will measure the low-energy antiproton spectrum with high precision, and will open new discovery space for antihelium. To reach the required sensitivity, the GAPS detector incorporates a new approach for antimatter detection, utilizing a tracker with custom-designed, lithium-drifted Silicon detectors that both capture an incoming antinucleus into an exotic atom and measure the de-excitation X-ray and nuclear annihilation product, together with a fast time-of-flight system, allowing for a high-precision β measurement and trigger. During the past Antarctic season, GAPS performed a pre-flight, instrument testing campaign on the ground. Unfortunately, GAPS was not able to launch in the past season due to the weather. This talk will highlight key results from the Antarctic ground testing campaign and present an outlook for the December 2025/January 2026 Antarctic launch season in which GAPS is scheduled to launch.
2025
Inglese
ICRC2025 The Astroparticle Physics Conference
501
Art. n. 531
1
9
online
Italy
Trieste
Sissa Medialab Srl
ICRC 2025: 39th International Cosmic Ray Conference, Geneva, Switzerland, 15-24 July 2025
39th
Geneva, Switzerland
15-24 July 2025
internazionale
Settore IINF-01/A - Elettronica
info:eu-repo/semantics/conferenceObject
62
Stoessl, A.; Aoyama, K.; Aramaki, T.; Beggs, P.; Boezio, M.; Boggs, S. E.; Bridges, G.; Bonvicini, V.; Campana, D.; Everson, E.; Fabris, L.; Feldman, ...espandi
1.4 Contributi in atti di convegno - Contributions in conference proceedings::1.4.01 Contributi in atti di convegno - Conference presentations
open
Non definito
273
(2025). Estimating the performance of the GAPS detector with muon ground testing data from Antarctica . In POS PROCEEDINGS OF SCIENCE. Retrieved from https://hdl.handle.net/10446/319885
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10446/319885
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