activity
20142024
most citedVortex cycles at the inner edges of dead zones in protoplanetary disks

40 citations · 72 across the 8 of their papers we have counts for

collaborators

8 papers

astro-ph.EP2024

The physical mechanism of the streaming instability

Nathan Magnan, Tobias Heinemann, Henrik N. Latter

The main hurdle of planet formation theory is the metre-scale barrier. One of the most promising ways to overcome it is via the streaming instability (SI). Unfortunately, the mecha…

astro-ph.EP2024

Dynamics of cold circumstellar gas in debris disks

Can Cui, Sebastian Marino, Quentin Kral +1

Mounting observational evidence indicates that cold circumstellar gas is present in debris disk systems. This work focuses on various dynamical processes that debris-disk gas may u…

astro-ph.EP20241 cited

A physical picture for the acoustic resonant drag instability

Nathan Magnan, Tobias Heinemann, Henrik N. Latter

Mixtures of gas and dust are pervasive in the universe, from AGN and molecular clouds to proto-planetary discs. When the two species drift relative to each other, a large class of…

astro-ph.EP2023

Thermal hysteresis and front propagation in dense planetary rings

Rémy Larue, Henrik Latter, Hanno Rein

Saturn's rings are composed of icy grains, most in the mm to m size ranges, undergoing several collisions per orbit. Their collective behaviour generates a remarkable array of stru…

astro-ph.SR2022

Gravitoturbulent dynamo in global simulations of gaseous disks

William Béthune, Henrik Latter

The turbulence driven by gravitational instabilities (GIs) can amplify magnetic fields in massive gaseous disks. This GI dynamo may appear in young circumstellar disks, whose weak…

astro-ph.EP201620 cited

On dust-gas gravitational instabilities in protoplanetary discs

Henrik Latter, Roxana Rosca

In protoplanetary disks the aerodynamical friction between particles and gas induces a variety of instabilities that facilitate planet formation. Of these we examine the so-called…