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相关论文: Resolved Imaging of the HR 8799 Debris Disk with H…

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We present 1.3 millimeter observations of the debris disk surrounding the HR 8799 multi-planet system from the Submillimeter Array to complement archival ALMA observations that spatially filtered away the bulk of the emission. The image…

地球与行星天体物理 · 物理学 2018-03-21 David J. Wilner , Meredith A. MacGregor , Sean M. Andrews , A. Meredith Hughes , Brenda Matthews , Kate Su

We have obtained a full suite of Spitzer observations to characterize the debris disk around HR 8799 and to explore how its properties are related to the recently discovered set of three massive planets orbiting the star. We distinguish…

地球与行星天体物理 · 物理学 2014-11-20 K. Y. L. Su , G. H. Rieke , K. R. Stapelfeldt , R. Malhotra , G. Bryden , P. S. Smith , K. A. Misselt , A. Moro-Martin , J. P. Williams

The star HR 8799 hosts one of the largest known debris discs and at least four giant planets. Previous observations have found evidence for a warm belt within the orbits of the planets, a cold planetesimal belt beyond their orbits and a…

We present far-infrared and submillimeter maps from the Herschel Space Observatory and the James Clerk Maxwell Telescope of the debris disk host star AU Microscopii. Disk emission is detected at 70, 160, 250, 350, 450, 500 and 850 micron.…

The exoplanetary system of HR 8799 is one of the rare systems in which multiple planets have been directly imaged. Its architecture is strikingly similar to that of the Solar System, with the four imaged giant planets surrounding a warm…

We have rereduced Spitzer IRS spectra and reanalyzed the SED's of three nearby debris disks: lambda Boo, HD 139664, and HR 8799. We find that that the thermal emission from these objects is well modeled using two single temperature black…

地球与行星天体物理 · 物理学 2011-02-11 Christine H. Chen , Patrick Sheehan , Dan M. Watson , P. Manoj Puravankara , Joan R. Najita

HD32297 is a young A-star (~30 Myr) 112 pc away with a bright edge-on debris disk that has been resolved in scattered light. We observed the HD32297 debris disk in the far-infrared and sub-millimeter with the Herschel Space Observatory PACS…

太阳与恒星天体物理 · 物理学 2015-06-16 J. K. Donaldson , J. Lebreton , A. Roberge , J. -C. Augereau , A. V. Krivov

In many ways, the HR 8799 planetary system strongly resembles our own. It features four giant planets and two debris belts, analogues to the Asteroid and Edgeworth-Kuiper belts. Here, we present the results of dynamical simulations of HR…

地球与行星天体物理 · 物理学 2016-08-17 B. Contro , J. Horner , R. A. Wittenmyer , J. P. Marshall , T. C. Hinse

We present 880 um Submillimeter Array observations of the debris disks around the young solar analogue HD 107146 and the multiple-planet host star HR 8799, at an angular resolution of 3" and 6", respectively. We spatially resolve the inner…

HR8799 is a nearby A-type star with a debris disk and three planetary candidates recently imaged directly. We undertake a coherent analysis of various portions of observational data on all known components of the system. The goal is to…

Observations from the Herschel Space Observatory have more than doubled the number of wide debris disks orbiting Sunlike stars to include over 30 systems with R > 100 AU. Here we present new Herschel PACS and re-analyzed Spitzer MIPS…

地球与行星天体物理 · 物理学 2016-12-21 Sarah E. Dodson-Robinson , Kate Y. L. Su , Geoff Bryden , Paul M. Harvey , Joel D. Green

Dynamical interactions between planets and debris disks may sculpt the disk structure and impact planetary orbits, but only a few systems with both imaged planets and spatially resolved debris disks are known. With the Caltech Submm…

地球与行星天体物理 · 物理学 2015-05-28 J. Patience , J. Bulger , R. R. King , B. Ayliffe , M. R. Bate , I. Song , C. Pinte , J. Koda , C. D. Dowell , A. Kovacs

Debris disks are the natural by-products of the planet formation process. Scattered or polarized light observations are mostly sensitive to small dust grains that are released from the grinding down of bigger planetesimals. High angular…

(abridged) Infrared excesses associated with debris disk host stars detected so far peak at wavelengths around ~100{\mu}m or shorter. However, six out of 31 excess sources in the Herschel OTKP DUNES have been seen to show significant - and…

In many ways, the HR8799 system resembles our Solar system more closely than any other discovered to date - albeit on a larger, younger, and more dramatic scale - featuring four giant planets and two debris belts. The first belt lies beyond…

太阳与恒星天体物理 · 物理学 2015-05-14 B. Contro , R. A. Wittenmyer , J. Horner , J. P. Marshall

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…

太阳与恒星天体物理 · 物理学 2015-06-22 Jonathan P. Marshall , F. Kirchschlager , S. Ertel , J. -C. Augereau , G. M. Kennedy , M. Booth , S. Wolf , B. Montesinos , C. Eiroa , B. Matthews

We present observations of the debris disk around gamma Doradus, an F1V star, from the Herschel Key Programme DEBRIS (Disc Emission via Bias-free Reconnaissance in the Infrared/Submillimetre). The disk is well-resolved at 70, 100 and 160…

We present far-infrared and sub-millimeter images of the eta Crv debris disk system obtained with Herschel and SCUBA-2, as well as Hubble Space Telescope visible and near-infrared coronagraphic images. In the 70 micron Herschel image, we…

We present a pre-discovery H-band image of the HR 8799 planetary system that reveals all three planets in August 2007. The data were obtained with the Keck adaptive optics system, using angular differential imaging and a coronagraph. We…

地球与行星天体物理 · 物理学 2014-11-20 Stanimir Metchev , Christian Marois , B. Zuckerman

HR~8799 is a young F0-type star with four directly imaged giant planets and two debris belts, one located exterior and another one interior to the region occupied by the planetary orbits. Having an architecture similar to that of our Solar…

地球与行星天体物理 · 物理学 2018-11-26 Fabian Geiler , Alexander Krivov , Mark Booth , Torsten Löhne
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