activity
20132019
most citedChemical enrichment of giant planets and discs due to pebble drift

242 citations · 466 across the 5 of their papers we have counts for

collaborators

5 papers

astro-ph.EP2019142 cited

Planet-forming material in a protoplanetary disc: the interplay between chemical evolution and pebble drift

Richard A. Booth, John D. Ilee

The composition of gas and solids in protoplanetary discs sets the composition of planets that form out of them. Recent chemical models have shown that the composition of gas and d…

astro-ph.SR2017

Multi-wavelength observations of planet forming disks: Constraints on planet formation processes

Inga Kamp, Stefano Antonellini, Andres Carmona +2

Our understanding of protoplanetary disks has greatly improved over the last decade due to a wealth of data from new facilities. Unbiased dust surveys with Spitzer leave us with go…

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…

astro-ph.SR201325 cited

LBT/LUCIFER near-infrared spectroscopy of PV Cephei. An outbursting young stellar object with an asymmetric jet

A. Caratti o Garatti, R. Garcia Lopez, G. Weigelt +4

We present a detailed spectroscopic investigation of the young eruptive star PV Cep, to improve our understanding of its nature and characterise its circumstellar environment after…