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相关论文: Consequences of an Eccentric Orbit for Fomalhaut b

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The planet candidate Fomalhaut b is bright in optical light but undetected in longer wavelengths, requiring a large, reflective dust cloud. The most recent observations find an extremely eccentric orbit (e ~ 0.8), indicating that Fomalhaut…

地球与行星天体物理 · 物理学 2015-06-23 S. M. Lawler , S. Greenstreet , B. Gladman

The apparent detection of an exoplanet orbiting Fomalhaut was announced in 2008. However, subsequent observations of Fomalhaut b raised questions about its status: Unlike other exoplanets, it is bright in the optical and nondetected in the…

地球与行星天体物理 · 物理学 2020-05-13 Andras Gaspar , George H. Rieke

The nearby star Fomalhaut harbours a cold, moderately eccentric dust belt with a sharp inner edge near 133 au. A low-mass, common proper motion companion (Fom b), was discovered near the inner edge and was identified as a planet candidate…

The star Fomalhaut hosts a narrow, eccentric debris disc, plus a highly eccentric companion Fomalhaut b. It is often argued that Fomalhaut b cannot have significant mass, otherwise it would quickly perturb the disc. We show that material in…

地球与行星天体物理 · 物理学 2021-03-24 Tim D. Pearce , Hervé Beust , Virginie Faramaz , Mark Booth , Alexander V. Krivov , Torsten Löhne , Pedro P. Poblete

The nearby star Fomalhaut is orbited by a compact source, Fomalhaut b, which has previously been interpreted as either a dust-enshrouded exoplanet or a dust cloud generated by the collision of two planetesimals. Such collisions are rarely…

We present new optical coronagraphic data of the bright star Fomalhaut obtained with the HST in 2010/2012 using STIS. Fomalhaut b is recovered at both epochs to high significance. The observations include the discoveries of tenuous…

地球与行星天体物理 · 物理学 2015-06-15 Paul Kalas , James R. Graham , Michael P. Fitzgerald , Mark Clampin

The eccentric shape of the debris disk observed around Fomalhaut was first attributed to Fom b, a companion detected near the belt inner-edge, but new constraints on its orbit revealed that it is belt-crossing, highly eccentric $(e \sim…

地球与行星天体物理 · 物理学 2014-12-24 Virginie Faramaz , Hervé Beust , Jean-Charles Augereau , Paul Kalas , James R. Graham

Fomalhaut is a bright star 7.7 parsecs (25 light years) from Earth that harbors a belt of cold dust with a structure consistent with gravitational sculpting by an orbiting planet. Here, we present optical observations of an exoplanet…

Fomalhaut A is among the most well-studied nearby stars and has been discovered to possess a putative planetary object as well as a remarkable eccentric dust belt. This eccentric dust belt has often been interpreted as the dynamical…

地球与行星天体物理 · 物理学 2017-10-25 Nathan A. Kaib , Ethan B. White , Andre Izidoro

We present Subaru/IRCS J band data for Fomalhaut and a (re)reduction of archival 2004--2006 HST/ACS data first presented by Kalas et al. (2008). We confirm the existence of a candidate exoplanet, Fomalhaut b, in both the 2004 and 2006 F606W…

地球与行星天体物理 · 物理学 2015-06-11 Thayne Currie , John Debes , Timothy J. Rodigas , Adam Burrows , Yoichi Itoh , Misato Fukagawa , Scott Kenyon , Marc Kuchner , Soko Matsumura

Following the optical imaging of the exoplanet candidate Fomalhaut b (Fom b), we present a numerical model of how Fomalhaut's debris disk is gravitationally shaped by an interior planet. The model is simple, adaptable to other debris disks,…

天体物理学 · 物理学 2011-02-11 E. Chiang , E. Kite , P. Kalas , J. R. Graham , M. Clampin

Fomalhaut b was long thought to shape the eccentric debris belt in the Fomalhaut system, but its orbit was found to be too eccentric for it to be the dominant belt-shaping perturber. This indicates that Fomalhaut b is Earth-sized at most…

地球与行星天体物理 · 物理学 2016-02-03 Virginie Faramaz

The nearby A4-type star Fomalhaut hosts a debris belt in the form of an eccentric ring, which is thought to be caused by dynamical influence from a giant planet companion. In 2008, a detection of a point-source inside the inner edge of the…

地球与行星天体物理 · 物理学 2015-06-03 Markus Janson , Joe Carson , David Lafreniere , David Spiegel , John Bent , Palmer Wong

At 7.7 pc, the A-type star Fomalhaut hosts a bright debris disk with multiple radial components. The disk is eccentric and misaligned, strongly suggesting that it is sculpted by interaction with one or more planets. Compact sources are now…

地球与行星天体物理 · 物理学 2023-07-19 Grant M. Kennedy , Joshua B. Lovell , Paul Kalas , Michael P. Fitzgerald

Context: The 440 Myr old main-sequence A-star Fomalhaut is surrounded by an eccentric debris belt with sharp edges. This sort of a morphology is usually attributed to planetary perturbations, but the orbit of the only planetary candidate…

地球与行星天体物理 · 物理学 2015-01-21 G. Cataldi , A. Brandeker , G. Olofsson , C. H. Chen , W. R. F. Dent , I. Kamp , A. Roberge , B. Vandenbussche

Planetary debris disks around other stars are analogous to the Asteroid and Kuiper belts in the Solar System. Their structure reveals the configuration of small bodies and provides hints for the presence of planets. The nearby star…

The nature and even the existence of a putative planet-mass companion ("Fomalhaut b") to Fomalhaut has been debated since 2008. In the present paper we reanalyze the multi-epoch ACS/STIS/WFC3 Hubble Space Telescope (HST) optical/near…

地球与行星天体物理 · 物理学 2015-06-11 Raphael Galicher , Christian Marois , Ben Zuckerman , Bruce Macintosh

We report observations with the JWST/NIRCam coronagraph of the Fomalhaut system. This nearby A star hosts a complex debris disk system discovered by the IRAS satellite. Observations in F444W and F356W filters using the round 430R mask…

Fomalhaut b is a directly imaged object in the debris disk of the star Fomalhaut. It has been hypothesized to be a planet, however there are issues with the observed colours of the object that do not fit planetary models. An alternative…

太阳与恒星天体物理 · 物理学 2017-03-10 K. Poppenhaeger , K. Auchettl , S. J. Wolk

We consider the ability of three models - impacts, captures, and collisional cascades - to account for a bright cloud of dust in Fomalhaut b. Our analysis is based on a novel approach to the power-law size distribution of solid particles…

太阳与恒星天体物理 · 物理学 2015-06-19 Scott J. Kenyon , Thayne Currie , Benjamin C. Bromley
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