activity
20162024
most citedChemical enrichment of giant planets and discs due to pebble drift

242 citations · 1.3k across the 26 of their papers we have counts for

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Showing 2017Show all

5 papers · 1 filter

astro-ph.IM201752 cited

GANDALF - Graphical Astrophysics code for N-body Dynamics And Lagrangian Fluids

David A. Hubber, Giovanni P. Rosotti, Richard A. Booth

GANDALF is a new hydrodynamics and N-body dynamics code designed for investigating planet formation, star formation and star cluster problems. GANDALF is written in C++, parallelis…

astro-ph.SR201711 cited

Radiation-pressure-driven sub-Keplerian rotation of the disc around the AGB star L2 Pup

Thomas J. Haworth, Richard A. Booth, Ward Homan +3

We study the sub-Keplerian rotation and dust content of the circumstellar material around the asymptotic giant branch (AGB) star L Puppis. We find that the thermal pressure gra…

astro-ph.SR201710 cited

Chemical enrichment of the planet forming region as probed by accretion

Richard A. Booth, Cathie J. Clarke

The chemical conditions in the planet forming regions of protoplanetary discs remain difficult to observe directly. Gas accreting from the disc on to the star provides a way to mea…

astro-ph.SR201757 cited

The chemistry of protoplanetary fragments formed via gravitational instabilities

J. D. Ilee, D. H. Forgan, M. G. Evans +8

In this paper, we model the chemical evolution of a 0.25 M protoplanetary disc surrounding a 1 M star that undergoes fragmentation due to self-gravity. We use S…

astro-ph.EP2017242 cited

Chemical enrichment of giant planets and discs due to pebble drift

Richard A. Booth, Cathie J. Clarke, Nikku Madhusudhan +1

Chemical compositions of giant planets provide a means to constrain how and where they form. Traditionally, super-stellar elemental abundances in giant planets were thought to be p…