SIMBAD references

2014A&A...570A.114M - Astronomy and Astrophysics, volume 570A, 114-114 (2014/10-1)

Interpreting the extended emission around three nearby debris disc host stars.

MARSHALL J.P., KIRCHSCHLAGER F., ERTEL S., AUGEREAU J.-C., KENNEDY G.M., BOOTH M., WOLF S., MONTESINOS B., EIROA C. and MATTHEWS B.

Abstract (from CDS):

Cool debris discs are a relic of the planetesimal formation process around their host star, analogous to the solar system's Edgeworth-Kuiper belt. As such, they can be used as a proxy to probe the origin and formation of planetary systems like our own. The Herschel open time key programmes ``DUst around NEarby Stars'' (DUNES) and ``Disc Emission via a Bias-free Reconnaissance in the Infrared/Submillimetre'' (DEBRIS) observed many nearby, sun-like stars at far-infrared wavelengths seeking to detect and characterize the emission from their circumstellar dust. Excess emission attributable to the presence of dust was identified from around ∼20% of stars. Herschel's high angular resolution (∼7'' FWHM at 100µm) provided the capacity for resolving debris belts around nearby stars with radial extents comparable to the solar system (50-100au). As part of the DUNES and DEBRIS surveys, we obtained observations of three debris disc stars, HIP 22263 (HD 30495), HIP 62207 (HD 110897), and HIP 72848 (HD 131511), at far-infrared wavelengths with the Herschel PACS instrument. Combining these new images and photometry with ancilliary data from the literature, we undertook simultaneous multi-wavelength modelling of the discs' radial profiles and spectral energy distributions using three different methodologies: single annulus, modified black body, and a radiative transfer code. We present the first far-infrared spatially resolved images of these discs and new single-component debris disc models. We characterize the capacity of the models to reproduce the disc parameters based on marginally resolved emission through analysis of two sets of simulated systems (based on the HIP 22263 and HIP 62207 data) with the noise levels typical of the Herschel images. We find that the input parameter values are recovered well at noise levels attained in the observations presented here.

Abstract Copyright:

Journal keyword(s): circumstellar matter - stars: individual: HIP 22263 - stars: individual: HIP 62207 - stars: individual: HIP 72848 - infrared: stars

Simbad objects: 15

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