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GeV observations of star-forming galaxies with the fermi large area telescope

  • M. Ackermann
  • , M. Ajello
  • , A. Allafort
  • , L. Baldini
  • , J. Ballet
  • , D. Bastieri
  • , K. Bechtol
  • , R. Bellazzini
  • , B. Berenji
  • , E. D. Bloom
  • , E. Bonamente
  • , A. W. Borgland
  • , A. Bouvier
  • , J. Bregeon
  • , M. Brigida
  • , P. Bruel
  • , R. Buehler
  • , S. Buson
  • , G. A. Caliandro
  • , R. A. Cameron
  • P. A. Caraveo, J. M. Casandjian, C. Cecchi, E. Charles, A. Chekhtman, C. C. Cheung, J. Chiang, A. N. Cillis, S. Ciprini, R. Claus, J. Cohen-Tanugi, J. Conrad, S. Cutini, F. De Palma, C. D. Dermer, S. W. Digel, E. Do Couto E Silva, P. S. Drell, A. Drlica-Wagner, C. Favuzzi, S. J. Fegan, P. Fortin, Y. Fukazawa, S. Funk, P. Fusco, F. Gargano, D. Gasparrini, S. Germani, N. Giglietto, F. Giordano, T. Glanzman, G. Godfrey, I. A. Grenier, S. Guiriec, M. Gustafsson, D. Hadasch, M. Hayashida, E. Hays, R. E. Hughes, G. Jóhannesson, A. S. Johnson, T. Kamae, H. Katagiri, J. Kataoka, J. Knödlseder, M. Kuss, J. Lande, F. Longo, F. Loparco, B. Lott, M. N. Lovellette, P. Lubrano, G. M. Madejski, P. Martin, M. N. Mazziotta, J. E. McEnery, P. F. Michelson, T. Mizuno, C. Monte, M. E. Monzani, A. Morselli, I. V. Moskalenko, S. Murgia, S. Nishino, J. P. Norris, E. Nuss, M. Ohno, T. Ohsugi, A. Okumura, N. Omodei, E. Orlando, M. Ozaki, D. Parent, M. Persic, M. Pesce-Rollins, V. Petrosian, M. Pierbattista, F. Piron, G. Pivato, T. A. Porter, S. Rainò, R. Rando, M. Razzano, A. Reimer, O. Reimer, S. Ritz, M. Roth, C. Sbarra, C. Sgrò, E. J. Siskind, G. Spandre, P. Spinelli, Łukasz Stawarz, A. W. Strong, H. Takahashi, T. Tanaka, J. B. Thayer, L. Tibaldo, M. Tinivella, D. F. Torres, G. Tosti, E. Troja, Y. Uchiyama, J. Vandenbroucke, G. Vianello, V. Vitale, A. P. Waite, M. Wood, Z. Yang
  • c/o DESY
  • Stanford University
  • Istituto Nazionale di Fisica Nucleare, Sezione di Pisa
  • Universite Paris-Saclay
  • INFN
  • University of Padova
  • INFN Sezione di Perugia
  • University of Perugia
  • University of California at Santa Cruz
  • Politecnico di Bari
  • INFN Sezione di Bari
  • University of Sheffield
  • INAF Istituto di Astrofisica Spaziale e Fisica Cosmica, Milan
  • George Mason University
  • Naval Research Laboratory
  • National Research Council
  • Instituto de Astronomía y Física del Espacio
  • NASA Goddard Space Flight Center
  • Science and Research Directorate
  • Laboratoire Univers et Particules de Montpellier
  • Stockholm University
  • Oskar Klein Centre
  • Ip Paris
  • Hiroshima University
  • Center for Space Plasma and Aeronomic Research
  • Kyoto University
  • The Ohio State University
  • University of Iceland
  • Ibaraki University
  • Waseda University
  • IRAP/CNRS
  • INFN Sezione di Trieste
  • University of Trieste
  • Univ. Bordeaux
  • Max Planck Institut für Extraterrestrische Physik
  • University of Maryland
  • Sezione di Roma
  • Boise State University
  • ISAS/JAXA
  • Nagoya University
  • INAF-Trieste
  • Medical University of Innsbruck
  • University of Washington
  • NYCB Real-Time Computing Inc.
  • Jagiellonian University
  • Pompeu Fabra University (UPF)
  • Consorzio Interuniversitario per la Fisica Spaziale (CIFS)
  • University of Rome “Tor Vergata”

Research output: Contribution to journalArticlepeer-review

383 Citations (Scopus)

Abstract

Recent detections of the starburst galaxies M82 and NGC253 by gamma-ray telescopes suggest that galaxies rapidly forming massive stars are more luminous at gamma-ray energies compared to their quiescent relatives. Building upon those results, we examine a sample of 69 dwarf, spiral, and luminous and ultraluminous infrared galaxies at photon energies 0.1-100 GeV using 3years of data collected by the Large Area Telescope (LAT) on the Fermi Gamma-ray Space Telescope (Fermi). Measured fluxes from significantly detected sources and flux upper limits for the remaining galaxies are used to explore the physics of cosmic rays in galaxies. We find further evidence for quasi-linear scaling relations between gamma-ray luminosity and both radio continuum luminosity and total infrared luminosity which apply both to quiescent galaxies of the Local Group and low-redshift starburst galaxies (conservative P-values ≲ 0.05 accounting for statistical and systematic uncertainties). The normalizations of these scaling relations correspond to luminosity ratios of log (L 0.1-100 GeV/L 1.4 GHz) = 1.7 ± 0.1 (statistical) ± 0.2(dispersion) and log (L 0.1-100 GeV/L 8-1000 μm) = -4.3 ± 0.1 (statistical) ± 0.2(dispersion) for a galaxy with a star formation rate of 1 M yr-1, assuming a Chabrier initial mass function. Using the relationship between infrared luminosity and gamma-ray luminosity, the collective intensity of unresolved star-forming galaxies at redshifts 0 < z < 2.5 above 0.1 GeV is estimated to be 0.4-2.4 × 10-6 ph cm-2 s-1 sr-1 (4%-23% of the intensity of the isotropic diffuse component measured with the LAT). We anticipate that 10 galaxies could be detected by their cosmic-ray-induced gamma-ray emission during a 10 year Fermi mission.

Original languageEnglish
Article number164
JournalAstrophysical Journal
Volume755
Issue number2
DOIs
Publication statusPublished - 20 Aug 2012

Keywords

  • cosmic rays
  • galaxies: starburst
  • gamma rays: diffuse background
  • gamma rays: galaxies

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