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  Search for new cosmic-ray acceleration sites within the 4FGL catalog Galactic plane sources

Fermi-LAT Collaboration, Abdollahi, S., Acero, F., Ackermann, M., Baldini, L., Ballet, J., et al. (2022). Search for new cosmic-ray acceleration sites within the 4FGL catalog Galactic plane sources. Astrophysical Journal, 933, 204. Retrieved from https://publications.mppmu.mpg.de/?action=search&mpi=MPP-2022-358.

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Fermi-LAT Collaboration1, Autor
Abdollahi, S.1, Autor
Acero, F.1, Autor
Ackermann, M.1, Autor
Baldini, L.1, Autor
Ballet, J.1, Autor
Barbiellini, G.1, Autor
Bastieri, D.1, Autor
Bellazzini, R.1, Autor
Berenji, B.1, Autor
Berretta, A.1, Autor
Bissaldi, E.1, Autor
Blandford, R.D.1, Autor
Bonino, R.1, Autor
Bruel, P.1, Autor
Buson, S.1, Autor
Cameron, R.A.1, Autor
Caputo, R.1, Autor
Caraveo, P.A.1, Autor
Castro, D.1, Autor
Chiaro, G.1, AutorCibrario, N.1, AutorCiprini, S.1, AutorCoronado-Blázquez, J.1, AutorCrnogorcevic, M.1, AutorCutini, S.1, AutorD'Ammando, F.1, AutorDe Gaetano, S.1, AutorDi Lalla, N.1, AutorDirirsa, F.1, AutorDi Venere, L.1, AutorDomínguez, A.1, AutorFegan, S.J.1, AutorFiori, A.1, AutorFleischhack, H.1, AutorFranckowiak, A.1, AutorFukazawa, Y.1, AutorFusco, P.1, AutorGammaldi, V.1, AutorGargano, F.1, AutorGasparrini, D.1, AutorGiacchino, F.1, AutorGiglietto, N.1, AutorGiordano, F.1, AutorGiroletti, M.1, AutorGlanzman, T.1, AutorGreen, D.1, AutorGrenier, I.A.1, AutorGrondin, M.-H.1, AutorGuiriec, S.1, AutorGustafsson, M.1, AutorHarding, A.K.1, AutorHays, E.1, AutorHewitt, J.W.1, AutorHoran, D.1, AutorHou, X.1, AutorJóhannesson, G.1, AutorKayanoki, T.1, AutorKerr, M.1, AutorKuss, M.1, AutorLarsson, S.1, AutorLatronico, L.1, AutorLemoine-Goumard, M.1, AutorLi, J.1, AutorLongo, F.1, AutorLoparco, F.1, AutorLubrano, P.1, AutorMaldera, S.1, AutorMalyshev, D.1, AutorManfreda, A.1, AutorMartí-Devesa, G.1, AutorMazziotta, M.N.1, AutorMereu, I.1, AutorMichelson, P.F.1, AutorMirabal, N.1, AutorMitthumsiri, W.1, AutorMizuno, T.1, AutorMonzani, M.E.1, AutorMorselli, A.1, AutorMoskalenko, I.V.1, AutorNuss, E.1, AutorOmodei, N.1, AutorOrienti, M.1, AutorOrlando, E.1, AutorOrmes, J.F.1, AutorPaneque, D.1, AutorPei, Z.1, AutorPersic, M.1, AutorPesce-Rollins, M.1, AutorPillera, R.1, AutorPoon, H.1, AutorPorter, T.A.1, AutorPrincipe, G.1, AutorRainò, S.1, AutorRando, R.1, AutorRani, B.1, AutorRazzano, M.1, AutorRazzaque, S.1, AutorReimer, A.1, AutorReimer, O.1, AutorReposeur, T.1, AutorSánchez-Conde, M.1, AutorSaz Parkinson, P.M.1, AutorScotton, L.1, AutorSerini, D.1, AutorSgrò, C.1, AutorSiskind, E.J.1, AutorSpandre, G.1, AutorSpinelli, P.1, AutorSueoka, K.1, AutorSuson, D.J.1, AutorTajima, H.1, AutorTak, D.1, AutorThayer, J.B.1, AutorTorres, D.F.1, AutorTroja, E.1, AutorValverde, J.1, AutorWadiasingh, Z.1, AutorWood, K.1, AutorZaharijas, G.1, Autor mehr..
Affiliations:
1Max Planck Institute for Physics, Max Planck Society and Cooperation Partners, ou_2253650              

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Schlagwörter: Fermi
 Zusammenfassung: Cosmic rays are mostly composed of protons accelerated to relativistic speeds. When those protons encounter interstellar material, they produce neutral pions which in turn decay into gamma rays. This offers a compelling way to identify the acceleration sites of protons. A characteristic hadronic spectrum, with a low-energy break around 200 MeV, was detected in the gamma-ray spectra of four Supernova Remnants (SNRs), IC 443, W44, W49B and W51C, with the Fermi Large Area Telescope. This detection provided direct evidence that cosmic-ray protons are (re-)accelerated in SNRs. Here, we present a comprehensive search for low-energy spectral breaks among 311 4FGL catalog sources located within 5 degrees from the Galactic plane. Using 8 years of data from the Fermi Large Area Telescope between 50 MeV and 1 GeV, we find and present the spectral characteristics of 56 sources with a spectral break confirmed by a thorough study of systematic uncertainty. Our population of sources includes 13 SNRs for which the proton-proton interaction is enhanced by the dense target material; the high-mass gamma-ray binary LS~I +61 303; the colliding wind binary eta Carinae; and the Cygnus star-forming region. This analysis better constrains the origin of the gamma-ray emission and enlarges our view to potential new cosmic-ray acceleration sites.

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 Datum: 2022
 Publikationsstatus: Erschienen
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Titel: Astrophysical Journal
  Kurztitel : Astrophys.J.
Genre der Quelle: Zeitschrift
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Seiten: - Band / Heft: 933 Artikelnummer: - Start- / Endseite: 204 Identifikator: -