From the 1 of 6 linked papers with an AI index.
6 papers
Atmospheric evolution through outgassing and escape on young molten rocky exoplanets
Emma Postolec, Tim Lichtenberg, Harrison Nicholls +2
The paper models how outgassing from a cooling magma ocean and atmospheric escape together shape the early atmospheres of rocky exoplanets, exploring how factors like stellar type,…
Geophysical and atmospheric implications of O-dependent melting on rocky exoplanets
Mariana Sastre, Tim Lichtenberg, Laurent Soucasse +3
The geochemical evolution of long-lived magma oceans is strongly regulated by volatile exchange between the molten mantle and the atmosphere. For planets inside the runaway-greenho…
Coupled atmospHere Interior modeL Intercomparison (CHILI) Protocol Version 1.0: A CUISINES Intercomparison Project of Magma Ocean Models
Tim Lichtenberg, Laura Schaefer, Joshua Krissansen-Totton +23
Spectroscopic characterization of rocky exoplanets with the James Webb Space Telescope has brought the origin and evolution of their atmospheres into the focus of exoplanet science…
Constructing efficient score functions for rare event simulation in high-dimensional ocean-climate models
Lucas Esclapez, Valérian Jacques-Dumas, Reyk Börner +2
Calculating transition probabilities between different states of multistable climate tipping systems is computationally challenging in high-dimensional models. Targeted algorithms,…
Accelerating the Dutch Atmospheric Large-Eddy Simulation (DALES) model with OpenACC
Lucas Esclapez, Laurent Soucasse, Caspar Jungbacker +5
This paper presents the GPU porting through OpenACC directives of the Dutch Atmospheric Large-Eddy Simulation (DALES) application, a high-resolution atmospheric model. The code is…
Convective shutdown in the atmospheres of lava worlds
Harrison Nicholls, Raymond T. Pierrehumbert, Tim Lichtenberg +2
Atmospheric energy transport is central to the cooling of primordial magma oceans. Theoretical studies of atmospheres on lava planets have assumed that convection is the only proce…