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The β Pictoris disk imaged by Herschel PACS and SPIRE
Vandenbussche, B.; Sibthorpe, B.; Acke, B.; Pantin, E.; Olofsson, G.; Waelkens, C.; Dominik, C.; Barlow, M.J.; Blommaert, J.A.D.L.; Bouwman, J.; Brandeker, A.; Cohen, M.; De Meester, W.; Dent, W.R.F.; Exter, K.; Di Francesco, J.; Fridlund, M.; Gear, W.K.; Glauser, A.M.; Gomez, H.L.; Greaves, J.S.; Hargrave, P.C.; Harvey, P.M.; Henning, T.; Heras, A.M.; Hogerheijde, M.R.; Holland, W.S.; Huygen, R.; Ivison, R.J.; Jean, C.; Leeks, S.J.; Lim, T.L.; Liseau, R.; Matthews, B.C.; Naylor, D.A.; Pilbratt, G.L.; Polehampton, E.T.; Regibo, S.; Royer, P.; Sicilia-Aguilar, A.; Swinyard, B.M.; Walker, H.J.; Wesson, R. (2010). The β Pictoris disk imaged by Herschel PACS and SPIRE. Astron. Astrophys. 518: L133. https://dx.doi.org/10.1051/0004-6361/201014626
In: Astronomy & Astrophysics (Les Ulis). EDP Sciences: Les Ulis. ISSN 0004-6361; e-ISSN 1432-0746, more
Peer reviewed article  

Available in  Authors 

Author keywords
    stars: early-type / planetary systems / circumstellar matter / stars: individual: ß?Pic

Authors  Top 
  • Vandenbussche, B.
  • Sibthorpe, B.
  • Acke, B.
  • Pantin, E.
  • Olofsson, G.
  • Waelkens, C.
  • Dominik, C.
  • Barlow, M.J.
  • Blommaert, J.A.D.L.
  • Bouwman, J.
  • Brandeker, A.
  • Cohen, M.
  • De Meester, W.
  • Dent, W.R.F.
  • Exter, K., more
  • Di Francesco, J.
  • Fridlund, M.
  • Gear, W.K.
  • Glauser, A.M.
  • Gomez, H.L.
  • Greaves, J.S.
  • Hargrave, P.C.
  • Harvey, P.M.
  • Henning, T.
  • Heras, A.M.
  • Hogerheijde, M.R.
  • Holland, W.S.
  • Huygen, R.
  • Ivison, R.J.
  • Jean, C.
  • Leeks, S.J.
  • Lim, T.L.
  • Liseau, R.
  • Matthews, B.C.
  • Naylor, D.A.
  • Pilbratt, G.L.
  • Polehampton, E.T.
  • Regibo, S.
  • Royer, P.
  • Sicilia-Aguilar, A.
  • Swinyard, B.M.
  • Walker, H.J.
  • Wesson, R.

Abstract
    We obtained Herschel PACS and SPIRE images of the thermal emission of the debris disk around the A5V star β Pic. The disk is well resolved in the PACS filters at 70, 100, and 160 μm. The surface brightness profiles between 70 and 160 μm show no significant asymmetries along the disk, and are compatible with 90% of the emission between 70 and 160 μm originating in a region closer than 200 AU to the star. Although only marginally resolving the debris disk, the maps obtained in the SPIRE 250–500 μm filters provide full-disk photometry, completing the SED over a few octaves in wavelength that had been previously inaccessible. The small far-infrared spectral index (β = 0.34) indicates that the grain size distribution in the inner disk (<200 AU) is inconsistent with a local collisional equilibrium. The size distribution is either modified by non-equilibrium effects, or exhibits a wavy pattern, caused by an under-abundance of impactors which have been removed by radiation pressure.

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