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相关论文: The Age of Gl879 and Fomalhaut

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The nearby (d = 7.7 pc) A3V star Fomalhaut is orbited by a resolved dusty debris disk and a controversial candidate extrasolar planet. The commonly cited age for the system (200+-100 Myr) from Barrado y Navascues et al. (1997) relied on a…

太阳与恒星天体物理 · 物理学 2015-06-05 Eric E. Mamajek

We have recomputed the kinematic properties of several of dozens nearby stars, to try to verify if Castor has a cohort of stars sharing the same space motion and age. We used kinematics, the location of the stars in CM diagrams, their…

天体物理学 · 物理学 2007-05-23 D. Barrado y Navascues

We have reanalyzed data for the proposed moving group associated with beta Pic in order to determine if the group (or part of it) is real, and, if so, to derive an improved age estimate for beta Pic. By using new, more accurate proper…

天体物理学 · 物理学 2009-10-31 D. Barrado y Navascues , J. R. Stauffer , I. Song , J-P. Caillault

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…

We investigate the stellar environment of the Beta Pictoris-like star HD 141569 with optical spectroscopy and near infrared imaging. The B9.5Ve primary, and an M2 and an M4 type star both located in projection less than nine arseconds away…

天体物理学 · 物理学 2009-10-31 A. J. Weinberger , R. M. Rich , E. E. Becklin , B. Zuckerman , K. Matthews

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…

Discovery of the first planetary system by direct imaging around HR8799 has made the age determination of the host star a very important task. This determination is the key to derive accurate masses of the planets and to study the dynamical…

太阳与恒星天体物理 · 物理学 2015-05-18 A. Moya , P. J. Amado , D. Barrado , A. García Hernández , M. Aberasturi , B. Montesinos , F. Aceituno

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

Fomalhaut is one of the most interesting and well studied nearby stars, hosting at least one planet, a spectacular debris ring, and two distant low-mass stellar companions (TW PsA and LP 876-10, a.k.a. Fomalhaut B & C). We observed both…

地球与行星天体物理 · 物理学 2014-10-29 G. M. Kennedy , M. C. Wyatt , P. Kalas , G. Duchêne , B. Sibthorpe , J. -F. Lestrade , B. C. Matthews , J. S. Greaves

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

[Abridged] Debris disks are extrasolar analogs to the solar system planetesimal belts. The star Fomalhaut harbors a cold debris belt at 140 AU as well as evidence of a warm dust component, which is suspected of being a bright analog to the…

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

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

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

From optical spectroscopic measurements we determine that the HD 15407 binary system is ~80 Myr old. The primary, HD 15407A (spectral type F5V), exhibits strong mid-infrared excess emission indicative of a recent catastrophic collision…

太阳与恒星天体物理 · 物理学 2015-05-19 C. Melis , B. Zuckerman , Joseph H. Rhee , Inseok Song

Context: The $\beta$ Pictoris moving group is one of the most well-known young associations in the solar neighbourhood and several members are known to host circumstellar discs, planets, and comets. Measuring its age with precision is basic…

We present the discovery of a circumstellar dust disk surrounding AU Microscopium (AU Mic, GJ 803, HD 197481). This young M star at 10 parsec has the same age and origin as beta Pictoris, another nearby star surrounded by a dust disk. The…

天体物理学 · 物理学 2009-11-10 Paul Kalas , Michael C. Liu , Brenda C. Matthews

We obtained spectra, covering the CaII H and K region, for 49 exoplanet host (EH) stars, observable from the southern hemisphere. We measured the chromospheric activity index, Rhk. We compiled previously published values of this index for…

天体物理学 · 物理学 2009-11-11 C. Saffe , M. Gomez , C. Chavero

The edge-on debris disk of the nearby young star Beta Pictoris shows an unusual brightness asymmetry in the form of a clump. The clump has been detected in both the mid-IR and CO and its origin has so far remained uncertain. Here we present…

地球与行星天体物理 · 物理学 2023-01-18 Yinuo Han , Mark C. Wyatt , William R. F. Dent

We present estimates of stellar age and mass for 0.93 million Galactic disk main sequence turn-off and sub-giant stars from the LAMOST Galactic Spectroscopic Surveys. The ages and masses are determined by matching with stellar isochrones…

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