activity
20102019
most citedA generalized bayesian inference method for constraining the interiors of super Earths and sub-Neptunes

217 citations · 445 across the 5 of their papers we have counts for

collaborators

5 papers

astro-ph.EP201957 cited

Jupiter's heavy-element enrichment expected from formation models

Julia Venturini, Ravit Helled

The goal of this work is to investigate Jupiter's growth focusing on the amount of heavy elements accreted by the planet, and its comparison with recent structure models. Our model…

astro-ph.EP201925 cited

Using Deep Neural Networks to compute the mass of forming planets

Yann Alibert, Julia Venturini

Computing the mass of planetary envelopes and the critical mass beyond which planets accrete gas in a runaway fashion is important when studying planet formation, in particular for…

astro-ph.EP2016146 cited

Planet formation with envelope enrichment: new insights on planetary diversity

Julia Venturini, Yann Alibert, Willy Benz

We compute, for the first time, self-consistent models of planet growth including the effect of envelope enrichment. The change of envelope metallicity is assumed to be the result…

astro-ph.IM2016217 cited

A generalized bayesian inference method for constraining the interiors of super Earths and sub-Neptunes

C. Dorn, J. Venturini, A. Khan +5

We aim to present a generalized Bayesian inference method for constraining interiors of super Earths and sub-Neptunes. Our methodology succeeds in quantifying the degeneracy and co…

astro-ph.EP2010

A Secular Relativistic Model For Solar System's Numerical Simulations

T. Gallardo, J. Venturini

Using Gauss' averaged equations, we compute the secular relativistic effects generated by the Sun on the argument of the perihelion and the mean anomaly of an orbit. Then we test d…