Young binary stars with discs provide unique laboratories to study the earliest stages of planet formation in star-forming environments. The detection of substructure in discs around Class I protostars challenges current models of disc evolution, suggesting that planets may form earlier than previously expected (<1 Myr). In the context of the ALMA Large Program FAUST, we present observations of the circumbinary disc (CBD) around the young binary system L1551 IRS 5. The CBD exhibits two prominent over-densities in the continuum emission at the edge of the cavity, with the Northern over-density being about 20% brighter than the Southern one. By analysing the disc morphology and kinematics of L1551 IRS 5, we delineate dynamical constraints on the binary's orbital parameters. Additionally, we present 3D hydrodynamical models of the CBD to predict both the dust and the gas surface densities. Then, we compare the resulting synthetic observations with ALMA observations of the continuum emission at 1.3 mm and the C18O line emission. Our analysis suggests that the density enhancements observed with ALMA in L1551 IRS 5 can be caused by interactions between the binary stars and the CBD, leading to dust concentration within the disc. We conclude that the observed over-density corresponds to a location where could potentially grow under favourable conditions.
@article{arxiv.2512.10486,
title = {FAUST XXX: Dust enhancement in the young binary L1551 IRS 5},
author = {Nicolás Cuello and Eleonora Bianchi and François Ménard and Laurent Loinard and Ricardo Hernández Garnica and Aurora Durán and Cecilia Ceccarelli and María José Maureira and Claire J. Chandler and Claudio Codella and Nami Sakai and Linda Podio and Giovanni Sabatini and Layal Chahine and Marta de Simone and Davide Fedele and Doug Johnstone and Tomoyuki Hanawa and Izaskun Jiménez-Serra and Satoshi Yamamoto},
journal= {arXiv preprint arXiv:2512.10486},
year = {2026}
}
Comments
7 pages, 5 figures; Letter accepted for publication in A&A