Hint for aTeV neutrino emission from the Galactic Ridge with ANTARES
Metadatos
Mostrar el registro completo del ítemAutor
Antares Collaboration; Díaz García, Antonio Francisco; López Coto, Daniel; Navas Concha, SergioEditorial
Elsevier
Materia
ANTARES Neutrino telescope Galactic Centre Cosmic ray Pion-decay model
Fecha
2023-06-10Referencia bibliográfica
The ANTARES Collaboration. Hint for aTeV neutrino emission from the Galactic Ridge with ANTARES. PhysicsLettersB841(2023)137951[https://doi.org/10.1016/j.physletb.2023.137951]
Patrocinador
Centre National de la Recherche Scientifique (CNRS); French Atomic Energy Commission; Marie Curie Actions European Union (EU); Labex UnivEarthS; Region Grand-Est; Region Provence-Alpes-Cpte d'Azur; Region Provence-Alpes-Cote d'Azur; Federal Ministry of Education & Research (BMBF); Istituto Nazionale di Fisica Nucleare (INFN); European Union (EU); Netherlands Organization for Scientific Research (NWO) Netherlands Government; Consiliul National al Cercetarii Stiintifice (CNCS) Unitatea Executiva pentru Finantarea Invatamantului Superior, a Cercetarii, Dezvoltarii si Inovarii (UEFISCDI) ANR-10-LABX-0023 ANR-18-IDEX-0001; MCIN/AEI; ERDF A way of making Europe; "European Union NextGenerationEU/PRTR", Programa de Planes Complementarios I+D+I; Programa Prometeo; Programa Prometeo; GenT of the Generalitat Valenciana; Junta de Andalucia 754496; EU: MSC program; Programa Maria Zambrano (Spanish Ministry of Universities by the European Union, NextGenerationEU), Spain; Ministry of Higher Education, Scientific Research and Training, Morocco PID2021-124591NB-C41 PID2021-124591NB-C42 PID2021-124591NB-C43; Arab Fund for Economic and Social Development ASFAE/2022/023 ASFAE/2022/014 PROMETEO/2020/019 GENT/2018/034 GENT/2019/043 GENT/2020/049 GENT/2021/23 P18-FR-5057 101025085Resumen
Interactions of cosmic ray protons, atomic nuclei, and electrons in the interstellar medium in the inner part of the Milky Way produce a γ-ray flux from the Galactic Ridge. If the γ-ray emission is dominated by proton and nuclei interactions, a neutrino flux comparable to the γ-ray flux is expected from the same sky region.
Data collected by the ANTARES neutrino telescope are used to constrain the neutrino flux from the Galactic Ridge in the 1-100 TeV energy range. Neutrino events reconstructed both as tracks and showers are considered in the analysis and the selection is optimized for the search of an excess in the region |l| <30◦, |b| <2◦. The expected background in the search region is estimated using an off-zone region with similar sky coverage. Neutrino signal originating from a power-law spectrum with spectral index ranging from ν=1to 4is simulated in both channels. The observed energy distributions are fitted to constrain the neutrino emission from the Ridge.
The energy distributions in the signal region are inconsistent with the background expectation at ∼96%confidence level. The mild excess over the background is consistent with a neutrino flux with a power law with a spectral index 2.45+0.22−0.34and a flux normalization dNνdEν=4.0+2.7−2.0×10−16GeV−1cm−2s−1sr−1at 40 TeV reference energy. Such flux is consistent with the expected neutrino signal if the bulk of the observed γ-ray flux from the Galactic Ridge originates from interactions of cosmic ray protons and nuclei with a power-law spectrum extending well into the PeV energy range