4.5 Article

The population of TeV pulsar wind nebulae in the HESS Galactic Plane Survey

Journal

ASTRONOMY & ASTROPHYSICS
Volume 612, Issue -, Pages -

Publisher

EDP SCIENCES S A
DOI: 10.1051/0004-6361/201629377

Keywords

gamma rays: general; catalogs; surveys; ISM: supernova remnants; pulsars: general

Funding

  1. German Ministry for Education and Research (BMBF)
  2. Max Planck Society
  3. German Research Foundation (DFG)
  4. French Ministry for Research
  5. CNRS-IN2P3
  6. Astroparticle Interdisciplinary Programme of the CNRS
  7. U.K. Science and Technology Facilities Council (STFC)
  8. IPNP of the Charles University
  9. Czech Science Foundation
  10. Polish Ministry of Science and Higher Education
  11. South African Department of Science and Technology
  12. National Research Foundation
  13. University of Namibia
  14. Innsbruck University
  15. Austrian Science Fund (FWF)
  16. Austrian Federal Ministry for Science, Research and Economy
  17. University of Adelaide
  18. Australian Research Council
  19. EGI Federation

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The nine-year H.E.S.S. Galactic Plane Survey (HGPS) has yielded the most uniform observation scan of the inner Milky Way in the TeV gamma-ray band to date. The sky maps and source catalogue of the HGPS allow for a systematic study of the population of TeV pulsar wind nebulae found throughout the last decade. To investigate the nature and evolution of pulsar wind nebulae, for the first time we also present several upper limits for regions around pulsars without a detected TeV wind nebula. Our data exhibit a correlation of TeV surface brightness with pulsar spindown power (E) over dot. This seems to be caused both by an increase of extension with decreasing (E) over dot, and hence with time, compatible with a power law R-PWN((E) over dot) similar to(E) over dot(0.65 +/- 0.20), and by a mild decrease of TeV gamma-ray luminosity with decreasing (E) over dot, compatible with L-1 (10 TeV) similar to (E) over dot(0.59 +/- 0.21). We also find that the off sets of pulsars with respect to the wind nebula centre with ages around 10 kyr are frequently larger than can be plausibly explained by pulsar proper motion and could be due to an asymmetric environment. In the present data, it seems that a large pulsar off set is correlated with a high apparent TeV efficiency L1- 10 TeV / (E) over dot. In addition to 14 HGPS sources considered firmly identified pulsar wind nebulae and 5 additional pulsar wind nebulae taken from literature, we find 10 HGPS sources that are likely TeV pulsar wind nebula candidates. Using a model that subsumes the present common understanding of the very high-energy radiative evolution of pulsar wind nebulae, we find that the trends and variations of the TeV observables and limits can be reproduced to a good level, drawing a consistent picture of present-day TeV data and theory.

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