activity
20152022
most citedThe Impact of Mixing Treatments on Cloud Modelling in 3D Simulations of Hot Jupiters

40 citations · 104 across the 3 of their papers we have counts for

collaborators
Showing astro-ph.EPShow all

6 papers · 1 filter

astro-ph.EP202228 cited

The Impact of Phase Equilibrium Cloud Models on GCM Simulations of GJ~1214b

D. A. Christie, N. J. Mayne, R. M. Gillard +4

We investigate the impact of clouds on the atmosphere of GJ~1214b using the radiatively-coupled, phase-equilibrium cloud model {\sc EddySed} coupled to the {\sc Unified Model} gene…

astro-ph.EP202140 cited

The Impact of Mixing Treatments on Cloud Modelling in 3D Simulations of Hot Jupiters

D. A. Christie, N. J. Mayne, S. Lines +7

We present results of 3D hydrodynamical simulations of HD209458b including a coupled, radiatively-active cloud model ({\sc EddySed}). We investigate the role of the mixing by repla…

astro-ph.EP2018

The Transiting Exoplanet Community Early Release Science Program for JWST

Jacob L. Bean, Kevin B. Stevenson, Natalie M. Batalha +99

The James Webb Space Telescope (JWST) presents the opportunity to transform our understanding of planets and the origins of life by revealing the atmospheric compositions, structur…

astro-ph.EP2018

Simulating the cloudy atmospheres of HD 209458 b and HD 189733 b with the 3D Met Office Unified Model

S. Lines, N. J. Mayne, Ian A. Boutle +9

To understand and compare the 3D atmospheric structure of HD 209458 b and HD 189733 b, focusing on the formation and distribution of cloud particles, as well as their feedback on t…

astro-ph.EP2016

Modelling circumbinary protoplanetary disks II. Gas disk feedback on planetesimal dynamical and collisional evolution in the circumbinary systems Kepler-16 and 34

S. Lines, Z. M. Leinhardt, C. Baruteau +2

Aims. We investigate the feasibility of planetesimal growth in circumbinary protoplanetary disks around the observed systems Kepler- 16 and Kepler-34 under the gravitational influe…

astro-ph.EP201536 cited

Numerically Predicted Indirect Signatures of Terrestrial Planet Formation

Zoë M. Leinhardt, Jack Dobinson, Philip J. Carter +1

The intermediate phases of planet formation are not directly observable due to lack of emission from planetesimals. Planet formation is, however, a dynamically active process resul…