most citedSelf-consistent Dynamical and Chaotic Tides in the REBOUNDx framework

4 citations · 6 across the 6 of their papers we have counts for

collaborators
Showing astro-ph.EPShow all

7 papers · 1 filter

astro-ph.EP2026

Shaving the Outskirts of Planetary Systems Probed by Roman via Stellar Flybys

Donald Liveoak, Tim Hallatt, Sarah Millholland

The recently launched Nancy Grace Roman Space Telescope (\textit{Roman}) will soon begin observations that promise to revolutionize our understanding of exoplanet demographics. \te…

astro-ph.EP2026

Intra-system Uniformity through Planetary Embryo Accumulation

Donald Liveoak, Fred C. Adams

Intra-system uniformity is a key trend in observed exoplanet systems. Understanding the physical mechanisms which sculpt planetary systems into uniform or non-uniform configuration…

astro-ph.EP2026

Case Study of a Super-eccentric Warm Jupiter Migrating via Equilibrium and Dynamical Tides

Donald Liveoak, Sarah Millholland, Michelle Vick

A leading theory for hot Jupiter formation is high-eccentricity migration, in which planets are born at large separations and excited to near-unity eccentricities, creating extreme…

astro-ph.EP2026★ 1 cited

Uncovering the Rapidly Evolving Orbits of the Dynamic TOI-201 System

Ismael Mireles, Solène Ulmer-Moll, Donald Liveoak +47

Studying planetary interactions in exoplanet systems informs theories of planet formation and evolution, providing essential context for understanding our own solar system. We comb…

astro-ph.EP2026★ 1 cited

Stability of Multiplanet Systems Through Hot Jupiter Destruction

Donald Liveoak, Tim Hallatt, Sarah Millholland

Recent observational and theoretical work suggests that the sub-Jovian desert (periods days, masses ) hosts the remains of destroyed hot…

astro-ph.EP2026★ 4 cited

Self-consistent Dynamical and Chaotic Tides in the REBOUNDx framework

Donald J. Liveoak, Sarah C. Millholland, Michelle Vick +1

At high eccentricities, tidal forcing excites vibrational modes within orbiting bodies known as dynamical tides. In this paper, we implement the coupled evolution of these modes wi…