collaborators

8 papers

astro-ph.EP2026

Planet formation in chemically diverse and evolving discs II. Chemical fingerprints in planetary atmospheres

E. Pacetti, D. Turrini, E. Schisano +13

Giant planets form in protoplanetary discs, where the coupled dynamical and chemical evolution of gas and solids determines the composition of the material they accrete. We investi…

astro-ph.SR2025

The accretion luminosity of Class I protostars

L. Testi, A. Natta, S. Gozzi +7

The value of the accretion luminosity during the early phases of star formation is a crucial information which helps us understand how stars form, yet it is still very difficult to…

astro-ph.EP2025

Planet formation in chemically diverse and evolving discs -- I. Composition of planetary building blocks

E. Pacetti, E. Schisano, D. Turrini +12

Protoplanetary discs are dynamic environments where the interplay between chemical processes and mass transport shapes the composition of gas and dust available for planet formatio…

astro-ph.SR2025

FAUST XXVI. The dust opacity spectral indices of protostellar envelopes bridge the gap between interstellar medium and disks

Luca Cacciapuoti, L. Testi, A. J. Maury +36

The sub-millimetre dust opacity spectral index is a critical observable to constrain dust properties, such as the maximum grain size of an observed dust population. It has been wid…

astro-ph.GA2025

Anisotropy in the carbon monoxide (CO) line emission across the Milky Way's disk

J. D. Soler, M. Heyer, M. Benedettini +11

We present a study of the CO(1-0) line emission anisotropy across the Milky Way's disk to examine the effect of stellar feedback and Galactic dynamics on the distribution of…

astro-ph.EP2025

Planetesimal formation via the streaming instability in simulations of infall dominated young disks

L. -A. Hühn, C. P. Dullemond, U. Lebreuilly +7

Protoplanetary disks naturally emerge during protostellar core-collapse. In their early evolutionary stages, infalling material dominates their dynamical evolution. In the context…