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20182020
most citedStreaming Instability for Particle-Size Distributions

96 citations · 215 across the 3 of their papers we have counts for

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Showing 2018Show all

7 papers · 1 filter

astro-ph.EP2018

Migrating super-Earths in low-viscosity discs: unveiling the roles of feedback, vortices, and laminar accretion flows

Colin P. McNally, Richard P. Nelson, Sijme-Jan Paardekooper +1

We present the highest resolution study to date of super-Earths migrating in inviscid and low-viscosity discs, motivated by the connection to laminar, wind-driven models of protopl…

astro-ph.EP2018

Asymptotically stable numerical method for multispecies momentum transfer: gas and multifluid-dust test suite and implementation in FARGO3D

Pablo Benítez-Llambay, Leonardo Krapp, Martín E. Pessah

We present an asymptotically and unconditionally stable numerical method to account for the momentum transfer between multiple species. Momentum is conserved to machine precision.…

astro-ph.EP2018

Dust segregation in Hall-dominated turbulent protoplanetary disks

Leonardo Krapp, Oliver Gressel, Pablo Benítez-Llambay +3

Imaging of the dust continuum emitted from disks around nearby protostars reveals diverse substructure. In recent years, theoretical efforts have been intensified to investigate ho…

astro-ph.EP2018

Observability of planet-disc interactions in CO kinematics

Sebastian Perez, Simon Casassus, Pablo Benítez-Llambay

Empirical evidence of planets in gas-rich circumstellar discs is required to constrain giant planet formation theories. Here we study the kinematic patterns which arise from planet…

astro-ph.EP2018

Orbital migration and Resonance Offset of the Kepler-25 and K2-24 systems

C. Charalambous, X. S. Ramos, P. Benítez-Llambay +1

Based on the model described in Ramos et al., 2017, we present an analytical+numerical study of the resonance capture under Type-I migration for the Kepler-25 (Marcy et al., 2014)…

astro-ph.EP2018

Characterizing the variable dust permeability of planet-induced gaps

Philipp Weber, Pablo Benítez-Llambay, Oliver Gressel +2

Aerodynamic theory predicts that dust grains in protoplanetary disks will drift radially inward on comparatively short timescales. In this context, it has long been known that the…