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Probing the PeV region in the astrophysical neutrino spectrum using νμ from the Southern sky

Title: Probing the PeV region in the astrophysical neutrino spectrum using νμ from the Southern sky
Authors: Abbasi, R; Ackermann, M; Adams, J; Agarwalla, SK; Aguilar, JA; Ahlers, M; Alameddine, JM; Amin, NM; Andeen, K; Argüelles, C; Ashida, Y; Athanasiadou, S; Axani, SN; Babu, R; Bai, X; V., A Balagopal; Baricevic, M; Barwick, SW; Bash, S; Basu, V; Bay, R; Beatty, JJ; Tjus, J Becker; Beise, J; Bellenghi, C; BenZvi, S; Berley, D; Bernardini, E; Besson, DZ; Blaufuss, E; Bloom, L; Blot, S; Bontempo, F; Motzkin, JY Book; Meneguolo, C Boscolo; Böser, S; Botner, O; Böttcher, J; Braun, J; Brinson, B; Brisson-Tsavoussis, Z; Brostean-Kaiser, J; Brusa, L; Burley, RT; Butterfield, D; Campana, MA; Caracas, I; Carloni, K; Carpio, J; Chattopadhyay, S; Chau, N; Chen, Z; Chirkin, D; Choi, S; Clark, BA; Coleman, A; Coleman, P; Collin, GH; Connolly, A; Conrad, JM; Corley, R; Cowen, DF; De Clercq, C; DeLaunay, JJ; Delgado, D; Deng, S; Desai, A; Desiati, P; de Vries, KD; de Wasseige, G; DeYoung, T; Díaz-Vélez, JC; Dierichs, P; DiKerby, S; Dittmer, M; Domi, A; Draper, L; Dujmovic, H; Durnford, D; Dutta, K; DuVernois, MA; Ehrhardt, T; Eidenschink, L; Eimer, A; Eller, P; Ellinger, E; Mentawi, S El; Elsässer, D; Engel, R; Erpenbeck, H; Esmail, W; Evans, J; Evenson, PA; Fan, KL; Fang, K; Farrag, K; Fazely, AR; Fedynitch, A; Feigl, N; Fiedlschuster, S
Source: Physical Review D, vol 112, iss 1
Publisher Information: eScholarship, University of California
Publication Year: 2025
Collection: University of California: eScholarship
Subject Terms: 5106 Nuclear and Plasma Physics (for-2020); 5107 Particle and High Energy Physics (for-2020); 51 Physical Sciences (for-2020)
Description: IceCube has observed a diffuse astrophysical neutrino flux over the energy region from a few TeV to a few PeV. At PeV energies, the spectral shape is not yet well measured due to the low statistics of the data. This analysis probes the gap between 1 and 10 PeV by using high-energy downgoing muon neutrinos. To reject the large atmospheric muon background, two complementary techniques are combined. The first technique selects events with high stochasticity to reject atmospheric muon bundles whose stochastic energy losses are smoothed due to high muon multiplicity. The second technique vetoes atmospheric muons with the IceTop surface array. Using 9 yrs of data, we found two neutrino candidate events in the signal region, consistent with expectation from background, each with relatively high signal probabilities. A joint maximum likelihood estimation is performed using this sample and an independent 9.5-yr sample of tracks to measure the neutrino spectrum. A likelihood ratio test is done to compare the single power-law (SPL) vs SPL+cutoff hypothesis; the SPL+cutoff model is not significantly better than the SPL. High-energy astrophysical objects from four source catalogs are also checked around the direction of the two events. No significant coincidence was found.
Document Type: article in journal/newspaper
File Description: application/pdf
Language: unknown
Relation: qt4vq7313q; https://escholarship.org/uc/item/4vq7313q; https://escholarship.org/content/qt4vq7313q/qt4vq7313q.pdf
DOI: 10.1103/2hnq-1fsx
Availability: https://escholarship.org/uc/item/4vq7313q; https://escholarship.org/content/qt4vq7313q/qt4vq7313q.pdf; https://doi.org/10.1103/2hnq-1fsx
Rights: CC-BY
Accession Number: edsbas.6BE898F5
Database: BASE