4.6 Article

Simultaneous Planck, Swift, and Fermi observations of X-ray and γ-ray selected blazars

期刊

ASTRONOMY & ASTROPHYSICS
卷 541, 期 -, 页码 -

出版社

EDP SCIENCES S A
DOI: 10.1051/0004-6361/201117825

关键词

relativistic processes; BL Lacertae objects: general; quasars: general; galaxies: active

资金

  1. ESA
  2. CNES
  3. CNRS/INSU-IN2P3-INP (France)
  4. ASI
  5. CNR
  6. INAF (Italy)
  7. NASA [NNX08AW31G, NNG06GG1G, NAS8-03060]
  8. DoE (USA)
  9. STFC
  10. UKSA (UK)
  11. CSIC
  12. MICINN
  13. JA (Spain)
  14. Tekes
  15. AoF
  16. CSC (Finland)
  17. DLR
  18. MPG (Germany)
  19. CSA (Canada)
  20. DTU Space (Denmark)
  21. SER/SSO (Switzerland)
  22. RCN (Norway)
  23. SFI (Ireland)
  24. FCT/MCTES (Portugal)
  25. DEISA (EU)
  26. Istituto Nazionale di Astrofisica in Italy
  27. Centre National d'Etudes Spatiales in France
  28. Academy of Finland [212656, 210338, 121148, 127740, 122352]
  29. NSF [AST-0808050]
  30. University of Michigan
  31. Chinese National Natural Science Foundation [10633020, 10778714, 11073032]
  32. National Basic Research Program of China (973 Program) [2007CB815403]
  33. Keck Institute for Space Studies
  34. Fulbright-CONICYT
  35. STFC [ST/J00152X/1, ST/J001562/1, ST/K000225/1, ST/G002916/1] Funding Source: UKRI
  36. Science and Technology Facilities Council [ST/J00152X/1, ST/K000225/1, ST/J001562/1, ST/G002916/1] Funding Source: researchfish
  37. Direct For Mathematical & Physical Scien
  38. Division Of Astronomical Sciences [1109911] Funding Source: National Science Foundation
  39. Academy of Finland (AKA) [122352, 122352] Funding Source: Academy of Finland (AKA)

向作者/读者索取更多资源

We present simultaneous Planck, Swift, Fermi, and ground-based data for 105 blazars belonging to three samples with flux limits in the soft X-ray, hard X-ray, and gamma-ray bands, with additional 5GHz flux-density limits to ensure a good probability of a Planck detection. We compare our results to those of a companion paper presenting simultaneous Planck and multi-frequency observations of 104 radio-loud northern active galactic nuclei selected at radio frequencies. While we confirm several previous results, our unique data set allows us to demonstrate that the selection method strongly influences the results, producing biases that cannot be ignored. Almost all the BL Lac objects have been detected by the Fermi Large Area Telescope (LAT), whereas 30% to 40% of the flat-spectrum radio quasars (FSRQs) in the radio, soft X-ray, and hard X-ray selected samples are still below the gamma-ray detection limit even after integrating 27 months of Fermi-LAT data. The radio to sub-millimetre spectral slope of blazars is quite flat, with similar to 0 up to about 70GHz, above which it steepens to similar to -0.65. The BL Lacs have significantly flatter spectra than FSRQs at higher frequencies. The distribution of the rest-frame synchrotron peak frequency (nu(S)(peak)) in the spectral energy distribution (SED) of FSRQs is the same in all the blazar samples with = 10(13.1+.1) Hz, while the mean inverse Compton peak frequency, , ranges from 10(21) to 10(22) Hz. The distributions of nu(S)(peak) and nu(S)(peak) of BL Lacs are much broader and are shifted to higher energies than those of FSRQs; their shapes strongly depend on the selection method. The Compton dominance of blazars, defined as the ratio of the inverse Compton to synchrotron peak luminosities, ranges from less than 0.2 to nearly 100, with only FSRQs reaching values larger than about 3. Its distribution is broad and depends strongly on the selection method, with gamma-ray selected blazars peaking at similar to 7 or more, and radio-selected blazars at values close to 1, thus implying that the common assumption that the blazar power budget is largely dominated by high-energy emission is a selection effect. A comparison of our multi-frequency data with theoretical predictions shows that simple homogeneous SSC models cannot explain the simultaneous SEDs of most of the gamma-ray detected blazars in all samples. The SED of the blazars that were not detected by Fermi-LAT may instead be consistent with SSC emission. Our data challenge the correlation between bolometric luminosity and nu(S)(peak) predicted by the blazar sequence.

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