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相关论文: Exocometary gas structure, origin and physical pro…

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The debris disk around $\beta$~Pictoris is known to contain gas. Previous ALMA observations revealed a CO belt at $\sim$85 au with a distinct clump, interpreted as a location of enhanced gas production. Photodissociation converts CO into C…

The exocometary origin of CO gas has been confirmed in several extrasolar Kuiper belts, with CO ice abundances consistent with Solar System comets. We here present a molecular survey of the $\beta$ Pictoris belt with the Submillimeter Array…

地球与行星天体物理 · 物理学 2018-02-14 L. Matrà , D. J. Wilner , K. I. Öberg , S. M. Andrews , R. A. Loomis , M. C. Wyatt , W. R. F. Dent

We present high-resolution $^{12}$CO and $^{13}$CO 2-1 ALMA observations, as well as optical and near-infrared spectroscopy, of the highly-inclined protoplanetary disk around SSTC2D J163131.2-242627. The spectral type we derive for the…

The 30 Myr old A3-type star HD 21997 is one of the two known debris dust disks having a measurable amount of cold molecular gas. With the goal of understanding the physical state, origin, and evolution of the gas in young debris disks, we…

太阳与恒星天体物理 · 物理学 2015-06-17 Á. Kóspál , A. Moór , A. Juhász , P. Ábrahám , D. Apai , T. Csengeri , C. A. Grady , Th. Henning , A. M. Hughes , Cs. Kiss , I. Pascucci , M. Schmalzl

The debris disk surrounding $\beta$~Pictoris has been observed with ALMA to contain a belt of CO gas with a distinct peak at $\sim$85 au. This CO clump is thought to be the result of a region of enhanced density of solids that collide and…

地球与行星天体物理 · 物理学 2019-08-21 M. Cavallius , G. Cataldi , A. Brandeker , G. Olofsson , B. Larsson , R. Liseau

Recent ALMA observations present mounting evidence for the presence of exocometary gas released within Kuiper belt analogues around nearby main sequence stars. This represents a unique opportunity to study their ice reservoir at the younger…

The detection of gas in debris disks raises the question of whether this gas is a remnant from the primordial protoplanetary phase, or released by the collision of secondary bodies. In this paper we analyze ALMA observations at 1-1.5"…

太阳与恒星天体物理 · 物理学 2019-06-26 Antonio Hales , Uma Gorti , John Carpenter , Meredith Hughes , Kevin Flaherty

Circumstellar debris disks older than a few Myr should be largely devoid of primordial gas remaining from the protoplanetary disk phase. Tracing the origin of observed atomic gas in Keplerian rotation in the edge-on debris disk surrounding…

地球与行星天体物理 · 物理学 2015-06-05 R. Nilsson , A. Brandeker , G. Olofsson , K. Fathi , Ph. Thébault , R. Liseau

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

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 spatial distribution of gas and solids in protoplanetary disks determines the composition and formation efficiency of planetary systems. A number of disks show starkly different distributions for the gas and small grains compared to…

太阳与恒星天体物理 · 物理学 2016-12-07 L. Ilsedore Cleeves , Karin I. Öberg , David J. Wilner , Jane Huang , Ryan A. Loomis , Sean M. Andrews , Ian Czekala

The origin and evolution of CO gas in debris disks has been debated since its initial detection. The gas could have a primordial origin, as a remnant of the protoplanetary disk or a secondary exocometary origin. This paper investigates the…

The star $\beta$ Pictoris harbors a young planetary system, which is characterized by the presence of a gaseous and dusty debris disk, at least two massive planets and many minor bodies. For more than thirty years, exocomets transiting the…

The cold outer regions of protoplanetary disks are expected to contain a midplane-centered layer where gas-phase CO molecules freeze out and their overall abundance is low. The layer then manifests itself as a void in the channel maps of CO…

地球与行星天体物理 · 物理学 2025-08-13 O. Chrenko , S. Casassus , R. O. Chametla

The 23 Myr young star $\beta$ Pictoris is a laboratory for planet formation studies given its observed debris disk, its two directly imaged super-Jovian planets, and the evidence of transiting extrasolar comets. The most recent evidence of…

地球与行星天体物理 · 物理学 2024-09-11 René Heller

Recent ALMA observations discovered consequent amounts (i.e., up to a few $10^{-1}\; \rm M_\oplus$) of CO gas in debris disks that were expected to be gas-free. This gas is in general estimated to be mostly composed of CO, C, and O (i.e.,…

地球与行星天体物理 · 物理学 2024-11-22 C. Bergez-Casalou , Q. Kral

Despite being $>10$Myr, there are $\sim$10 debris discs with as much CO gas as in protoplanetary discs. Such discs have been assumed to be "hybrid", i.e., with secondary dust but primordial gas. Here we show that both the dust and gas in…

地球与行星天体物理 · 物理学 2019-09-25 Quentin Kral , Sebastian Marino , Mark C. Wyatt , Mihkel Kama , Luca Matra

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…

CO gas is detected in a significant number of debris discs, but its origin and evolution remains unclear. Key constraints are its mass and spectro-spatial distribution, which are coupled through optical depth and have only been analysed at…

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