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Limits on dark matter annihilation signals from the Fermi LAT 4-year measurement of the isotropic gamma-ray background

  • M. Ackermann
  • , M. Ajello
  • , A. Albert
  • , L. Baldini
  • , G. Barbiellini
  • , D. Bastieri
  • , K. Bechtol
  • , R. Bellazzini
  • , E. Bissaldi
  • , E. D. Bloom
  • , R. Bonino
  • , J. Bregeon
  • , P. Bruel
  • , R. Buehler
  • , S. Buson
  • , G. A. Caliandro
  • , R. A. Cameron
  • , M. Caragiulo
  • , P. A. Caraveo
  • , C. Cecchi
  • E. Charles, A. Chekhtman, J. Chiang, G. Chiaro, S. Ciprini, R. Claus, J. Cohen-Tanugi, J. Conrad, A. Cuoco, S. Cutini, F. D'Ammando, A. De Angelis, F. De Palma, C. D. Dermer, S. W. Digel, P. S. Drell, A. Drlica-Wagner, C. Favuzzi, E. C. Ferrara, A. Franckowiak, Y. Fukazawa, S. Funk, P. Fusco, F. Gargano, D. Gasparrini, N. Giglietto, F. Giordano, M. Giroletti, G. Godfrey, S. Guiriec, M. Gustafsson, J. W. Hewitt, X. Hou, T. Kamae, M. Kuss, S. Larsson, L. Latronico, F. Longo, F. Loparco, M. N. Lovellette, P. Lubrano, D. Malyshev, F. Massaro, M. Mayer, M. N. Mazziotta, P. F. Michelson, W. Mitthumsiri, T. Mizuno, M. E. Monzani, A. Morselli, I. V. Moskalenko, S. Murgia, M. Negro, R. Nemmen, E. Nuss, T. Ohsugi, M. Orienti, E. Orlando, J. F. Ormes, D. Paneque, J. S. Perkins, M. Pesce-Rollins, F. Piron, G. Pivato, S. Raino, R. Rando, M. Razzano, A. Reimer, O. Reimer, M. Sánchez-Conde, A. Schulz, C. Sgro, E. J. Siskind, G. Spandre, P. Spinelli, A. W. Strong, D. J. Suson, H. Tajima, H. Takahashi, J. G. Thayer, J. B. Thayer, L. Tibaldo, M. Tinivella, D. F. Torres, E. Troja, Y. Uchiyama, G. Vianello, M. Werner, B. L. Winer, K. S. Wood, M. Wood, G. Zaharijas
  • c/o DESY
  • Clemson University
  • Stanford Linear Accelerator Center
  • Istituto Nazionale di Fisica Nucleare, Sezione di Pisa
  • INFN Sezione di Trieste
  • University of Trieste
  • INFN
  • University of Padova
  • University of Chicago
  • INFN Sezione di Torino
  • University of Turin
  • Laboratoire Univers et Particules de Montpellier
  • Consorzio Interuniversitario per la Fisica Spaziale (CIFS)
  • INFN Sezione di Bari
  • INAF Istituto di Astrofisica Spaziale e Fisica Cosmica, Milan
  • INFN Sezione di Perugia
  • University of Perugia
  • George Mason University
  • Naval Research Laboratory
  • Science and Research Directorate
  • Osservatorio Astronomico di Roma
  • Stockholm University
  • Oskar Klein Centre
  • Royal Swedish Academy of Sciences
  • INAF Istituto di Radioastronomia
  • University of Bologna
  • and Physics University of Udine
  • Università Telematica Pegaso
  • Fermi National Accelerator Laboratory
  • Politecnico di Bari
  • Hiroshima University
  • NASA Goddard Space Flight Center
  • NASA Postdoctoral Program Fellow
  • Université Libre de Bruxelles
  • Georg-August-Universität Göttingen
  • Biochemical and Environmental Engineering
  • UMR 5797
  • Yale University
  • Faculty of Science, Mahidol University
  • Sezione di Roma
  • Long Beach VA and University of California
  • University of São Paulo
  • University of Denver
  • Max-Planck-Institut für Physik
  • Ministry of Education, Culture and Science, Netherlands
  • Medical University of Innsbruck
  • NYCB Real-Time Computing Inc.
  • Max Planck Institut für Extraterrestrische Physik
  • Purdue University Northwest
  • Nagoya University
  • University of Sheffield
  • Pompeu Fabra University (UPF)
  • University of Maryland
  • The Ohio State University
  • Abdus Salam International Centre for Theoretical Physics
  • University of Nova Gorica

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103 Citations (Scopus)

Résumé

We search for evidence of dark matter (DM) annihilation in the isotropic gamma-ray background (IGRB) measured with 50 months of Fermi Large Area Telescope (LAT) observations. An improved theoretical description of the cosmological DM annihilation signal, based on two complementary techniques and assuming generic weakly interacting massive particle (WIMP) properties, renders more precise predictions compared to previous work. More specifically, we estimate the cosmologically-induced gamma-ray intensity to have an uncertainty of a factor ∼ 20 in canonical setups. We consistently include both the Galactic and extragalactic signals under the same theoretical framework, and study the impact of the former on the IGRB spectrum derivation. We find no evidence for a DM signal and we set limits on the DM-induced isotropic gamma-ray signal. Our limits are competitive for DM particle masses up to tens of TeV and, indeed, are the strongest limits derived from Fermi LAT data at TeV energies. This is possible thanks to the new Fermi LAT IGRB measurement, which now extends up to an energy of 820 GeV. We quantify uncertainties in detail and show the potential this type of search offers for testing the WIMP paradigm with a complementary and truly cosmological probe of DM particle signals.

langue originaleAnglais
Numéro d'article008
journalJournal of Cosmology and Astroparticle Physics
Volume2015
Numéro de publication9
Les DOIs
étatPublié - 2 sept. 2015

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