The far-infrared excesses produced by debris disks are common features of stellar systems. These disks are thought to contain solids ranging from micron-sized dust to planetesimals. Naturally, their formation and evolution are linked to those of potential planets. With this motivation, the Herschel open time key programme DUNES (DUst around NEarby Stars) aims at further characterising known debris disks and discovering new ones in the regime explored by the Herschel space observatory. On the one hand, in their survey of 133 nearby FGK stars, DUNES discovered a class of extremely cold and faint debris disks, different from well-known disks such as the one around Vega in that their inferred typical grain sizes are rather large, indicating low...
Context. Debris discs are a consequence of the planet formation process and constitute the fingerpri...
Context. The existence of debris disks around old main sequence stars is usually explained by contin...
Astronomy and Astrophysics 537 (2013): A110 Reproduced with permission from Astronomy & Astrophysics...
Debris disks, which are inferred from the observed infrared excess to be ensembles of dust, rocks, a...
International audienceContext. Dusty debris discs around main sequence stars are thought to be the r...
Context. Dusty debris discs around main sequence stars are thought to be the result of continuous co...
Debris disks, which are inferred from the observed infrared excess to be ensembles of dust, rocks, a...
Infrared excesses associated with debris disk host stars detected so far peak at wavelengths around ...
Context. The dust observed in debris disks is produced through collisions of larger bodies left over...
Infrared excesses associated with debris disk host stars detected so far peak at wavelengths around ...
Context. The dust observed in debris disks is produced through collisions of larger bodies left over...
International audienceContext. The existence of debris disks around old main sequence stars is usual...
Context. The existence of debris disks around old main sequence stars is usually explained by contin...
Context. The existence of debris disks around old main sequence stars is usually explained by contin...
Context. Debris discs are a consequence of the planet formation process and constitute the fingerpri...
Context. The existence of debris disks around old main sequence stars is usually explained by contin...
Astronomy and Astrophysics 537 (2013): A110 Reproduced with permission from Astronomy & Astrophysics...
Debris disks, which are inferred from the observed infrared excess to be ensembles of dust, rocks, a...
International audienceContext. Dusty debris discs around main sequence stars are thought to be the r...
Context. Dusty debris discs around main sequence stars are thought to be the result of continuous co...
Debris disks, which are inferred from the observed infrared excess to be ensembles of dust, rocks, a...
Infrared excesses associated with debris disk host stars detected so far peak at wavelengths around ...
Context. The dust observed in debris disks is produced through collisions of larger bodies left over...
Infrared excesses associated with debris disk host stars detected so far peak at wavelengths around ...
Context. The dust observed in debris disks is produced through collisions of larger bodies left over...
International audienceContext. The existence of debris disks around old main sequence stars is usual...
Context. The existence of debris disks around old main sequence stars is usually explained by contin...
Context. The existence of debris disks around old main sequence stars is usually explained by contin...
Context. Debris discs are a consequence of the planet formation process and constitute the fingerpri...
Context. The existence of debris disks around old main sequence stars is usually explained by contin...
Astronomy and Astrophysics 537 (2013): A110 Reproduced with permission from Astronomy & Astrophysics...