The Trinity-One PeV-Neutrino Telescope

Fuente: arXiv
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Autori principali: O., David A. Raudales, Otte, A. Nepomuk, Bergman, D. R., Bogdan, J., Brown, A. M., Doro, M., Fedkevych, M., Giordano, F., Hao, C., Kieda, D., Mariotti, M., Onel, Y., Schapera, E., Soldin, D., Springer, W., Stepanoff, S., Taboada, I., Tran, K.
Natura: Preprint
Pubblicazione: 2025
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author O., David A. Raudales
Otte, A. Nepomuk
Bergman, D. R.
Bogdan, J.
Brown, A. M.
Doro, M.
Fedkevych, M.
Giordano, F.
Hao, C.
Kieda, D.
Mariotti, M.
Onel, Y.
Schapera, E.
Soldin, D.
Springer, W.
Stepanoff, S.
Taboada, I.
Tran, K.
author_facet O., David A. Raudales
Otte, A. Nepomuk
Bergman, D. R.
Bogdan, J.
Brown, A. M.
Doro, M.
Fedkevych, M.
Giordano, F.
Hao, C.
Kieda, D.
Mariotti, M.
Onel, Y.
Schapera, E.
Soldin, D.
Springer, W.
Stepanoff, S.
Taboada, I.
Tran, K.
contents Following the Trinity Demonstrator, Trinity One will be the first of the 18 Cherenkov telescopes that make up the Trinity PeV-Neutrino Observatory. Located on Frisco Peak in Utah, Trinity One can observe 64\% of the sky, allowing it to detect potential neutrino point sources with unprecedented sensitivity, ranging from 1 PeV to 10 EeV. We outline the design of Trinity One, which features a 60 m$^2$ light-collection surface and the ability to rotate in azimuth. It has a field of view measuring $5^\circ$ by $60^\circ$, which is equipped with a silicon photomultiplier camera with a resolution of $0.3^\circ$. Utilizing the design of Trinity One, we present performance calculations in relation to various source classes.
format Preprint
id arxiv_https___arxiv_org_abs_2509_18237
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Trinity-One PeV-Neutrino Telescope
O., David A. Raudales
Otte, A. Nepomuk
Bergman, D. R.
Bogdan, J.
Brown, A. M.
Doro, M.
Fedkevych, M.
Giordano, F.
Hao, C.
Kieda, D.
Mariotti, M.
Onel, Y.
Schapera, E.
Soldin, D.
Springer, W.
Stepanoff, S.
Taboada, I.
Tran, K.
High Energy Astrophysical Phenomena
Instrumentation and Methods for Astrophysics
Following the Trinity Demonstrator, Trinity One will be the first of the 18 Cherenkov telescopes that make up the Trinity PeV-Neutrino Observatory. Located on Frisco Peak in Utah, Trinity One can observe 64\% of the sky, allowing it to detect potential neutrino point sources with unprecedented sensitivity, ranging from 1 PeV to 10 EeV. We outline the design of Trinity One, which features a 60 m$^2$ light-collection surface and the ability to rotate in azimuth. It has a field of view measuring $5^\circ$ by $60^\circ$, which is equipped with a silicon photomultiplier camera with a resolution of $0.3^\circ$. Utilizing the design of Trinity One, we present performance calculations in relation to various source classes.
title The Trinity-One PeV-Neutrino Telescope
topic High Energy Astrophysical Phenomena
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2509.18237