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Related papers: Gap Formation in Planetesimal Disks Via Divergentl…

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We simulate planet migration caused by interactions between planets and a planetesimal disk. We use an N-body integrator optimized for near-Keplerian motion that runs in parallel on a video graphics card, and that computes all pair-wise…

Astrophysics · Physics 2008-09-18 Alexander J. Moore , Alice C. Quillen , Richard G. Edgar

Massive planets that open a gap in the accretion disk are believed to migrate with exactly the viscous speed of the disk, a regime termed type II migration. Population synthesis models indicate that standard type II migration is too rapid…

Earth and Planetary Astrophysics · Physics 2015-01-28 Christoph Dürmann , Wilhelm Kley

Combining hydrodynamic planet-disk interaction simulations with dust evolution models, we show that protoplanetary disks having a giant planet can reveal diverse morphology in (sub-)millimeter continuum, including a full disk without…

Earth and Planetary Astrophysics · Physics 2018-09-19 Jaehan Bae , Paola Pinilla , Tilman Birnstiel

The observed dust rings and gaps in protoplanetary disks could be imprints of forming planets. Even low-mass planets in the one-to-ten Earth-mass regime, that do not yet carve deep gas gaps, can generate such dust rings and gaps by driving…

Earth and Planetary Astrophysics · Physics 2024-12-04 Ayumu Kuwahara , Michiel Lambrechts , Hiroyuki Kurokawa , Satoshi Okuzumi , Takayuki Tanigawa

Transitional disks are protoplanetary disks with large and deep central holes in the gas, possibly carved by young planets. Dong, R., & Dawson, R. 2016, ApJ, 825, 7 simulated systems with multiple giant planets that were capable of carving…

Earth and Planetary Astrophysics · Physics 2023-03-08 Rory Bowens , Andrew Shannon , Rebekah Dawson , Jiayin Dong

By numerically integrating the compressible Navier-Stokes equations in two dimensions, we calculate the criterion for gap formation by a very low mass (q ~10^{-4}) protoplanet on a fixed orbit in a thin viscous disk. In contrast with some…

Earth and Planetary Astrophysics · Physics 2015-06-15 Paul C. Duffell , Andrew I MacFadyen

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.,…

Earth and Planetary Astrophysics · Physics 2024-11-22 C. Bergez-Casalou , Q. Kral

Debris belts on the periphery of planetary systems, encompassing the region occupied by planetary orbits, are massive analogues of the Solar system's Kuiper belt. They are detected by thermal emission of dust released in collisions amongst…

Earth and Planetary Astrophysics · Physics 2020-08-18 Alexander V. Krivov , Mark C. Wyatt

Recent observations by the {\it Kepler} space telescope have led to the discovery of more than 4000 exoplanet candidates consisting of many systems with Earth- to Neptune-sized objects that reside well inside the orbit of Mercury, around…

Earth and Planetary Astrophysics · Physics 2015-06-23 Hilke E. Schlichting

The formation of gas-giant planets within the lifetime of a protoplanetary disk is challenging especially far from a star. A promising model for the rapid formation of giant-planet cores is pebble accretion in which gas drag during…

Earth and Planetary Astrophysics · Physics 2021-06-30 John Chambers

The number of stars that are known to have debris disks is greater than that of stars known to harbour planets. These disks are detected because dust is created in the destruction of planetesimals in the disks much in the same way that dust…

Astrophysics · Physics 2008-07-09 M. C. Wyatt

Most standard descriptions of Type II migration state that massive, gap-opening planets must migrate at the viscous drift rate. This is based on the idea that the disk is separated into an inner and outer region and gas is considered unable…

Earth and Planetary Astrophysics · Physics 2015-06-19 Paul C. Duffell , Zoltan Haiman , Andrew I. MacFadyen , Daniel J. D'Orazio , Brian D. Farris

As one of the most commonly observed disk substructures, dust rings from high-resolution disk surveys appear to have different radial widths. Recent observations on PDS 70 and AB Aur reveal not only planets in the disk, but also the…

Earth and Planetary Astrophysics · Physics 2023-01-25 Jiaqing Bi , Min-Kai Lin , Ruobing Dong

Gaps in protoplanetary disks have long been hailed as signposts of planet formation. However, a direct link between exoplanets and disks remains hard to identify. We present a large sample study of ALMA disk surveys of nearby star-forming…

Earth and Planetary Astrophysics · Physics 2021-06-30 Nienke van der Marel , Gijs Mulders

In the classical core-accretion planet formation scenario, rapid inward migration and accretion timescales of kilometer size planetesimals may not favor the formation of massive cores of giant planets before the dissipation of…

Earth and Planetary Astrophysics · Physics 2017-07-26 O. M. Guilera , Zs. Sándor

Firstly, we study the final masses of giant planets growing in protoplanetary disks through capture of disk gas, by employing an empirical formula for the gas capture rate and a shallow disk gap model, which are both based on hydrodynamical…

Earth and Planetary Astrophysics · Physics 2016-06-01 Takayuki Tanigawa , Hidekazu Tanaka

Intermediate mass planets, from Super-Earth to Neptune-sized bodies, are the most common type of planets in the galaxy. The prevailing theory of planet formation, core-accretion, predicts significantly fewer intermediate-mass giant planets…

Earth and Planetary Astrophysics · Physics 2021-03-16 Hongping Deng , Lucio Mayer , Ravit Helled

Young circumstellar disks are of prime interest to understand the physical and chemical conditions under which planet formation takes place. Only very few detections of planet candidates within these disks exist, and most of them are…

Earth and Planetary Astrophysics · Physics 2018-09-12 M. Keppler , M. Benisty , A. Müller , Th. Henning , R. van Boekel , F. Cantalloube , C. Ginski , R. G. van Holstein , A. -L. Maire , A. Pohl , M. Samland , H. Avenhaus , J. -L. Baudino , A. Boccaletti , J. de Boer , M. Bonnefoy , G. Chauvin , S. Desidera , M. Langlois , C. Lazzoni , G. Marleau , C. Mordasini , N. Pawellek , T. Stolker , A. Vigan , A. Zurlo , T. Birnstiel , W. Brandner , M. Feldt , M. Flock , J. Girard , R. Gratton , J. Hagelberg , A. Isella , M. Janson , A. Juhasz , J. Kemmer , Q. Kral , A. -M. Lagrange , R. Launhardt , A. Matter , F. Ménard , J. Milli , P. Mollière , J. Olofsson , L. Perez , P. Pinilla , C. Pinte , S. P. Quanz , T. Schmidt , S. Udry , Z. Wahhaj , J. P. Williams , E. Buenzli , M. Cudel , C. Dominik , R. Galicher , M. Kasper , J. Lannier , D. Mesa , D. Mouillet , S. Peretti , C. Perrot , G. Salter , E. Sissa , F. Wildi , L. Abe , J. Antichi , J. -C. Augereau , A. Baruffolo , P. Baudoz , A. Bazzon , J. -L. Beuzit , P. Blanchard , S. S. Brems , T. Buey , V. De Caprio , M. Carbillet , M. Carle , E. Cascone , A. Cheetham , R. Claudi , A. Costille , A. Delboulbé , K. Dohlen , D. Fantinel , P. Feautrier , T. Fusco , E. Giro , D. Gisler , L. Gluck , C. Gry , N. Hubin , E. Hugot , M. Jaquet , D. Le Mignant , M. Llored , F. Madec , Y. Magnard , P. Martinez , D. Maurel , M. Meyer , O. Moeller-Nilsson , T. Moulin , L. Mugnier , A. Origne , A. Pavlov , D. Perret , C. Petit , J. Pragt , P. Puget , P. Rabou , J. Ramos , F. Rigal , S. Rochat , R. Roelfsema , G. Rousset , A. Roux , B. Salasnich , J. -F. Sauvage , A. Sevin , C. Soenke , E. Stadler , M. Suarez , M. Turatto , L. Weber

The presence of distant protoplanets may explain the observed gaps in the dust emission of protoplanetary disks. Here, we derive a novel analytical model to describe the temporal decay of the pebble flux through a protoplanetary disk as the…

Earth and Planetary Astrophysics · Physics 2024-02-07 Nerea Gurrutxaga , Anders Johansen , Michiel Lambrechts , Johan Appelgren

In the core accretion scenario of planet formation, rocky cores grow by first accreting solids until they are massive enough to accrete gas. For giant planet formation this means that a massive core must form within the lifetime of the gas…

Earth and Planetary Astrophysics · Physics 2023-06-21 Andrin Kessler , Yann Alibert
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