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相关论文: On the unusual gas composition in the Beta Pictori…

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The debris disk surrounding $\beta$ Pictoris has a gas composition rich in carbon and oxygen, relative to solar abundances. Two possible scenarios have been proposed to explain this enrichment. The preferential production scenario suggests…

太阳与恒星天体物理 · 物理学 2019-01-16 P. A. Wilson , R. Kerr , A. Lecavelier des Etangs , V. Bourrier , A. Vidal-Madjar , F. Kiefer , I. A. G. Snellen

The edge-on disk surrounding the nearby young star Beta Pictoris is the archetype of the "debris disks", which are composed of dust and gas produced by collisions and evaporation of planetesimals, analogues of Solar System comets and…

天体物理学 · 物理学 2007-05-23 Aki Roberge , Paul D. Feldman , Alycia J. Weinberger , Magali Deleuil , Jean-Claude Bouret

Chemical compositions of planets reveal much about their formation environments. Such information is well sought-after in studies of Solar System bodies and extra-solar ones. Here, we investigate the composition of planetesimals in the beta…

地球与行星天体物理 · 物理学 2025-03-19 Yanqin Wu , Kadin Worthen , Alexis Brandeker , Christine Chen

The young star beta Pictoris is well known for its dusty debris disk, produced through the grinding down by collisions of planetesimals, kilometre-sized bodies in orbit around the star. In addition to dust, small amounts of gas are also…

Context: The dusty debris disk around the $\sim$20 Myr old main-sequence A-star {\beta} Pictoris is known to contain gas. Evidence points towards a secondary origin of the gas as opposed to being a direct remnant form the initial…

地球与行星天体物理 · 物理学 2014-03-14 G. Cataldi , A. Brandeker , G. Olofsson , B. Larsson , R. Liseau , J. Blommaert , M. Fridlund , R. Ivison , E. Pantin , B. Sibthorpe , B. Vandenbussche , Y. Wu

The $\beta$ Pictoris system is characterized by a dusty debris disk, in addition to the presence of two already known planets. This makes it a particularly interesting case for studying the formation and evolution of planetary systems at a…

地球与行星天体物理 · 物理学 2025-02-26 A. Lacquement , H. Beust , V. Faramaz-Gorka , G. Duchêne

The presence of gas in dusty debris disks around main-sequence stars is reviewed. We present new observational results for the most prominent representative of the class, viz. the southern naked-eye star beta Pictoris. The spatial and…

天体物理学 · 物理学 2007-05-23 Rene' Liseau

(Abridged) The main sequence star beta Pictoris hosts the best studied circumstellar disk to date. Nonetheless, a long-standing puzzle has been around since the detection of metallic gas in the disk: radiation pressure from the star should…

天体物理学 · 物理学 2009-11-11 Rodrigo Fernández , Alexis Brandeker , Yanqin Wu

This paper presents a self-consistent model for the evolution of gas produced in the debris disc of $\beta$ Pictoris. Our model proposes that atomic carbon and oxygen are created from the photodissociation of CO, which is itself released…

地球与行星天体物理 · 物理学 2016-06-15 Quentin Kral , Mark Wyatt , Robert Carswell , Jim Pringle , Luca Matra , Attila Juhasz

The origin and evolution of gas in debris disks is still not well understood. Secondary gas production from cometary material or a primordial origin have been proposed. So far, observations have mostly concentrated on CO, with only few C…

Beta Pictoris is a young planetary system surrounded by a debris disk of dust and gas. The gas source of this disk could be exocomets (or 'falling and evaporating bodies', FEBs), which produce refractory elements (Mg, Ca, Fe) through…

While most debris disks consist of dust with little or no gas, a fraction has significant amounts of gas detected via emission lines of CO, ionized carbon, and/or atomic oxygen. Almost all such gaseous debris disks known are around A-type…

地球与行星天体物理 · 物理学 2023-11-07 Riouhei Nakatani , Neal J. Turner , Yasuhiro Hasegawa , Gianni Cataldi , Yuri Aikawa , Sebastián Marino , Hiroshi Kobayashi

The disk around AU Microscopii, an M1 star in the Beta Pictoris Moving Group, is extraordinarily well-suited for comparison to the Beta Pic debris disk (type A5V). We use far-UV absorption spectroscopy of AU Mic to probe its edge-on disk…

天体物理学 · 物理学 2009-11-11 Aki Roberge , Alycia J. Weinberger , Seth Redfield , Paul D. Feldman

The increased sensitivity of millimeter-wave facilities now makes possible the detection of low amounts of gas in debris disks. Some of the gas-rich debris disks harbor peculiar properties, with possible pristine gas and secondary generated…

太阳与恒星天体物理 · 物理学 2017-04-05 J. Pericaud , E. Di Folco , A. Dutrey , S. Guilloteau , V. Pietu

Context. Debris discs are thought to be formed through the collisional grinding of planetesimals, and can be considered as the outcome of planet formation. Understanding the properties of gas and dust in debris discs can help us to…

Mechanisms such as collisions of rocky bodies or cometary activity give rise to dusty debris disks. Debris disks trace the leftover building blocks of planets, and thus also planetary composition. HD 172555, a stellar twin of beta Pic,…

The nature of the gas in CO-rich debris discs remains poorly understood, as it could either be a remnant from the earlier Class II phase or of secondary origin, driven by the destruction of icy planetesimals. The aim of this paper was to…

Many stars are surrounded by disks of dusty debris formed in the collisions of asteroids, comets and dwarf planets. But is gas also released in such events? Observations at submm wavelengths of the archetypal debris disk around $\beta$…

Debris disks embrace the formation and evolution histories of planetary systems. Recent detections of gas in these disks have received considerable attention, as its origin ties up ongoing disk evolution and the present composition of…

It has been suggested that $\beta$ Pic b has a supersolar metallicity and subsolar C/O ratio. Assuming solar carbon and oxygen abundances for the star $\beta$ Pic and therefore the planet's parent protoplanetary disk, $\beta$ Pic b's C/O…

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