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Planet-forming disc evolution is not independent of the star formation and feedback process in giant molecular clouds. In particular, OB stars emit UV radiation that heats and disperses discs in a process called 'external photoevaporation'.…

Earth and Planetary Astrophysics · Physics 2022-10-06 Andrew J. Winter , Thomas J. Haworth

The streaming instability is often invoked as solution to the fragmentation and drift barriers in planetesimal formation, catalyzing the aggregation of dust on kyr timescales to grow km-sized cores. However there remains a lack of consensus…

Earth and Planetary Astrophysics · Physics 2017-10-11 Barbara Ercolano , Jeff Jennings , Giovanni Rosotti , Tilmann Birnstiel

Protoplanetary disks are found around young stars, and represent the embryonic stage of planetary systems. At different phases of their evolution, disks may undergo substantial mass-loss by photoevaporation: energetic photons from the…

Earth and Planetary Astrophysics · Physics 2019-01-24 Jason Champion

Recent years have seen growing interest in the streaming instability as a candidate mechanism to produce planetesimals. However, these investigations have been limited to small-scale simulations. We now present the results of a global…

Earth and Planetary Astrophysics · Physics 2017-04-19 Daniel Carrera , Uma Gorti , Anders Johansen , Melvyn B. Davies

Protoplanetary disks dissipate rapidly after the central star forms, on time-scales comparable to those inferred for planet formation. In order to allow the formation of planets, disks must survive the dispersive effects of UV and X-ray…

Earth and Planetary Astrophysics · Physics 2019-01-24 U. Gorti , R. Liseau , Zs. Sandor , C. Clarke

Planet-forming circumstellar disks are a fundamental part of the star formation process. Since stars form in a hierarchical fashion in groups of up to hundreds or thousands, the UV radiation environment that these disks are exposed to can…

Earth and Planetary Astrophysics · Physics 2025-10-03 Francisca Concha-Ramírez , Maite J. C. Wilhelm , Simon Portegies Zwart , Thomas J. Haworth

Most low-mass stars form in stellar clusters that also contain massive stars, which are sources of far-ultraviolet (FUV) radiation. Theoretical models predict that this FUV radiation produces photo-dissociation regions (PDRs) on the…

Astrophysics of Galaxies · Physics 2024-03-04 Olivier Berné , Emilie Habart , Els Peeters , Ilane Schroetter , Amélie Canin , Ameek Sidhu , Ryan Chown , Emeric Bron , Thomas J. Haworth , Pamela Klaassen , Boris Trahin , Dries Van De Putte , Felipe Alarcón , Marion Zannese , Alain Abergel , Edwin A. Bergin , Jeronimo Bernard-Salas , Christiaan Boersma , Jan Cami , Sara Cuadrado , Emmanuel Dartois , Daniel Dicken , Meriem Elyajouri , Asunción Fuente , Javier R. Goicoechea , Karl D. Gordon , Lina Issa , Christine Joblin , Olga Kannavou , Baria Khan , Ozan Lacinbala , David Languignon , Romane Le Gal , Alexandros Maragkoudakis , Raphael Meshaka , Yoko Okada , Takashi Onaka , Sofia Pasquini , Marc W. Pound , Massimo Robberto , Markus Röllig , Bethany Schefter , Thiébaut Schirmer , Thomas Simmer , Benoit Tabone , Alexander G. G. M. Tielens , Sílvia Vicente , Mark G. Wolfire , Isabel Aleman , Louis Allamandola , Rebecca Auchettl , Giuseppe Antonio Baratta , Clément Baruteau , Salma Bejaoui , Partha P. Bera , John H. Black , Francois Boulanger , Jordy Bouwman , Bernhard Brandl , Philippe Brechignac , Sandra Brünken , Mridusmita Buragohain , Andrew Burkhardt , Alessandra Candian , Stéphanie Cazaux , Jose Cernicharo , Marin Chabot , Shubhadip Chakraborty , Jason Champion , Sean W. J. Colgan , Ilsa R. Cooke , Audrey Coutens , Nick L. J. Cox , Karine Demyk , Jennifer Donovan Meyer , Cécile Engrand , Sacha Foschino , Pedro García-Lario , Lisseth Gavilan , Maryvonne Gerin , Marie Godard , Carl A. Gottlieb , Pierre Guillard , Antoine Gusdorf , Patrick Hartigan , Jinhua He , Eric Herbst , Liv Hornekaer , Cornelia Jäger , Eduardo Janot-Pacheco , Michael Kaufman , Francisca Kemper , Sarah Kendrew , Maria S. Kirsanova , Collin Knight , Sun Kwok , Álvaro Labiano , Thomas S. -Y. Lai , Timothy J. Lee , Bertrand Lefloch , Franck Le Petit , Aigen Li , Hendrik Linz , Cameron J. Mackie , Suzanne C. Madden , Joëlle Mascetti , Brett A. McGuire , Pablo Merino , Elisabetta R. Micelotta , Jon A. Morse , Giacomo Mulas , Naslim Neelamkodan , Ryou Ohsawa , Roberta Paladini , Maria Elisabetta Palumbo , Amit Pathak , Yvonne J. Pendleton , Annemieke Petrignani , Thomas Pino , Elena Puga , Naseem Rangwala , Mathias Rapacioli , Alessandra Ricca , Julia Roman-Duval , Evelyne Roueff , Gaël Rouillé , Farid Salama , Dinalva A. Sales , Karin Sandstrom , Peter Sarre , Ella Sciamma-O'Brien , Kris Sellgren , Matthew J. Shannon , Adrien Simonnin , Sachindev S. Shenoy , David Teyssier , Richard D. Thomas , Aditya Togi , Laurent Verstraete , Adolf N. Witt , Alwyn Wootten , Nathalie Ysard , Henning Zettergren , Yong Zhang , Ziwei E. Zhang , Junfeng Zhen

Protoplanetary discs form and evolve in a wide variety of stellar environments and are accordingly exposed to a wide range of ambient far ultraviolet (FUV) field strengths. Strong FUV fields are known to drive vigorous gaseous flows from…

Earth and Planetary Astrophysics · Physics 2019-12-19 Andrew D. Sellek , Richard A. Booth , Cathie J. Clarke

Planets are born from the gas and dust discs surrounding young stars. Energetic radiation from the central star can drive thermal outflows from the discs atmospheres, strongly affecting the evolution of the discs and the nascent planetary…

Earth and Planetary Astrophysics · Physics 2022-11-21 Barbara Ercolano , Giovanni Picogna

The formation of planetesimals via the streaming instability (SI) is a crucial step in planet formation, yet its triggering conditions and efficiency are highly sensitive to both disk properties and specific evolutionary processes. We aim…

The formation of planetesimals in protoplanetary disks due to collisional sticking of smaller dust aggregates has to face at least two severe obstacles, namely the rapid loss of material due to radial inward drift and particle fragmentation…

Astrophysics · Physics 2009-11-13 F. Brauer , Th. Henning , C. P. Dullemond

Models of dust coagulation and subsequent planetesimal formation are usually computed on the backdrop of an already fully formed protoplanetary disk model. At the same time, observational studies suggest that planetesimal formation should…

Earth and Planetary Astrophysics · Physics 2023-03-22 Joanna Drazkowska , Cornelis P. Dullemond

Protoplanetary disks are dispersed by viscous evolution and photoevaporation in a few million years; in the interim small, sub-micron sized dust grains must grow and form planets. The time-varying abundance of small grains in an evolving…

Earth and Planetary Astrophysics · Physics 2015-06-24 Uma Gorti , David Hollenbach , Cornelis Dullemond

The dust in planet-forming disks evolve rapidly through growth and radial drift, and external photoevaporation also contributes to this evolution in massive star-forming regions. We test whether the presence of substructures can explain the…

Earth and Planetary Astrophysics · Physics 2024-01-24 Matías Gárate , Paola Pinilla , Thomas J. Haworth , Stefano Facchini

The structure and evolution of protoplanetary disks, especially the radial flows of gas through them, are sensitive to a number of factors. One that has been considered only occasionally in the literature is external photoevaporation by…

Earth and Planetary Astrophysics · Physics 2015-12-23 Anusha Kalyaan , Steven J Desch , Nikhil Monga

Extensive photometric stellar surveys show that many main sequence stars show emission at infrared and longer wavelengths that is in excess of the stellar photosphere; this emission is thought to arise from circumstellar dust. The presence…

Earth and Planetary Astrophysics · Physics 2015-06-04 Amaya Moro-Martin

It is widely accepted that rocky planets form in the inner regions of protoplanetary disks (PPD) about 1 - 10 AU from the star. However, theoretical calculations show that when particles reach the size for which the radial migration is the…

Earth and Planetary Astrophysics · Physics 2014-12-04 Nicolas Cuello , Francesco C. Pignatale , Jean-François Gonzalez

Several hundred stars older than 10 million years have been observed to have infrared excesses. These observations are explained by dust grains formed by the collisional fragmentation of hidden planetesimals. Such dusty planetesimal discs…

Earth and Planetary Astrophysics · Physics 2015-06-19 Hiroshi Kobayashi , Torsten Loehne

The formation of planetesimals is expected to occur via particle-gas instabilities that concentrate dust into self-gravitating clumps. Triggering these instabilities requires the prior pileup of dust in the protoplanetary disk. Until now,…

The first stages of planet formation usually occur when the host star is still in a (relatively) dense star-forming region, where the effects of the external environment may be important for understanding the outcome of the planet formation…

Earth and Planetary Astrophysics · Physics 2021-01-20 Richard J. Parker , Rhana B. Nicholson , Hayley L. Alcock
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