ALMA observations of the kinematics and chemistry of disc formation
Johan E. Lindberg, Jes K. J{\o}rgensen, Christian Brinch, Troels, Haugb{\o}lle, Edwin A. Bergin, Daniel Harsono, Magnus V. Persson, Ruud, Visser, Satoshi Yamamoto

TL;DR
This study uses ALMA high-resolution spectral imaging to investigate the structure, chemistry, and kinematics of discs around young stellar objects in the R CrA cloud, revealing a Keplerian disc and insights into molecular chemistry during early star formation.
Contribution
First high-resolution ALMA observations of discs in the R CrA cloud, providing detailed kinematic and chemical analysis of Class 0/I protostars.
Findings
Detection of a Keplerian disc with a 50 AU radius around IRS7B.
Estimation of the central object mass at 2.3 solar masses.
Observation of faint CH$_3$OH emission likely due to envelope density profile.
Abstract
Context: The R CrA cloud hosts a handful of Class 0/I low-mass young stellar objects. The chemistry and physics at scales AU in this cloud are dominated by the irradiation from the nearby Herbig Be star R CrA. The luminous large-scale emission makes it necessary to use high-resolution spectral imaging to study the chemistry and dynamics of the inner envelopes and discs of the protostars. Aims: We aim to better understand the structure of the inner regions of these protostars and, in particular, the interplay between the chemistry and the presence of discs. Methods: Using Atacama Large Millimeter/submillimeter Array (ALMA) high-resolution spectral imaging interferometry observations, we study the molecular line and dust continuum emission at submillimetre wavelengths. Results: We detect dust continuum emission from four circumstellar discs around Class 0/I objects within the…
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