activity
20142024
most citedMagnetically self-regulated formation of early protoplanetary discs

125 citations · 278 across the 9 of their papers we have counts for

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Showing astro-ph.GAShow all

5 papers · 1 filter

astro-ph.GA2024

Magnetic Fields in Massive Star-forming Regions (MagMaR). V. The Magnetic Field at the Onset of High-mass Star Formation

Patricio Sanhueza, Junhao Liu, Kaho Morii +36

A complete understanding of the initial conditions of high-mass star formation and what processes determine multiplicity require the study of the magnetic field (B-field) in young,…

astro-ph.GA2024

Grain growth and its chemical impact in the first hydrostatic core phase

D. Navarro-Almaida, U. Lebreuilly, P. Hennebelle +8

The first hydrostatic core (FHSC) phase is a brief stage in the protostellar evolution that is difficult to detect. Our goal is to characterize the chemical evolution of gas and du…

astro-ph.GA202313 cited

Dynamics of dust grains in turbulent molecular clouds. Conditions for decoupling and limits of different numerical implementations

Benoît Commerçon, Ugo Lebreuilly, Daniel J. Price +3

Dust grain dynamics in molecular clouds is regulated by its interplay with supersonic turbulent gas motions. The conditions under which dust grains decouple from the dynamics of ga…

astro-ph.GA2016125 cited

Magnetically self-regulated formation of early protoplanetary discs

Patrick Hennebelle, Benoit Commercon, Gilles Chabrier +1

The formation of protoplanetary discs during the collapse of molecular dense cores is significantly influenced by angular momentum transport, notably by the magnetic torque. In tur…

astro-ph.GA201455 cited

The role of cosmic rays on magnetic field diffusion and the formation of protostellar discs

Marco Padovani, Daniele Galli, Patrick Hennebelle +2

The formation of protostellar discs is severely hampered by magnetic braking, as long as magnetic fields remain frozen in the gas. The latter condition depends on the levels of ion…