collaborators

5 papers

astro-ph.EP2025

On the Gravitational Collapse of Small Dust Grains in Self-gravitating Disk Structures

Hans Baehr, Ken Rice, Chao-Chin Yang +1

Planet formation may begin much earlier than previously expected, when the protoplanetary disk is still massive and gravitationally unstable. It has been proposed that solid grains…

astro-ph.EP2025

Bridging Unstratified and Stratified Simulations of the Streaming Instability for Grains

Jeonghoon Lim, Stanley A. Baronett, Jacob B. Simon +4

The streaming instability (SI), driven by aerodynamic coupling between solids and the gas under a global radial pressure gradient, concentrates solids and facilitates planetesimal…

astro-ph.EP2025

On the Mass Budget Problem of Protoplanetary Disks: Streaming Instability and Optically Thick Emission

Daniel Godines, Wladimir Lyra, Luca Ricci +4

Statistical studies of protoplanetary disks and exoplanet populations often exhibit a "missing mass" problem, where observed dust masses in (sub-)millimeter surveys are significant…

astro-ph.EP2025

Observational Signatures of a Previous Dynamical Instability in Multi-planet M-Dwarf Systems

Anna C. Childs, Alexa P. S. Hua, Rebecca G. Martin +2

We identify observational signatures suggesting a history of dynamical instability in 26 out of 34 M-dwarf multi-planet systems containing no large planets. These systems may have…

astro-ph.EP2025

Probing Conditions for Strong Clumping by the Streaming Instability: Small Dust Grains and Low Dust-to-gas Density Ratio

Jeonghoon Lim, Jacob B. Simon, Rixin Li +5

The streaming instability (SI) is a leading mechanism for concentrating solid particles into regions dense enough to form planetesimals. Its efficiency in clumping particles depend…