ALMA-IMF. VII. First release of the full spectral line cubes: Core kinematics traced by DCN J=(3-2)
N. Cunningham, A. Ginsburg, R. Galv\'an-Madrid, F. Motte, T. Csengeri,, A. M. Stutz, M. Fern\'andez-L\'opez, R. H. \'Alvarez-Guti\'errez, M. Armante,, T. Baug, M. Bonfand, S. Bontemps, J. Braine, N. Brouillet, G. Busquet, D. J., D\'iaz-Gonz\'alez, J. Di Francesco, A. Gusdorf

TL;DR
This paper presents the first release of full spectral line data cubes from the ALMA-IMF program, enabling detailed study of core kinematics and chemistry in 15 protoclusters at various evolutionary stages.
Contribution
It provides calibrated, processed spectral line cubes from ALMA observations of protoclusters, including initial analysis of DCN (3-2) line morphology and core velocities across different evolutionary stages.
Findings
DCN (3-2) traces diverse morphologies and velocity structures.
DCN (3-2) is more prevalent in evolved regions.
First estimates of core systemic velocities and linewidths.
Abstract
ALMA-IMF is an Atacama Large Millimeter/submillimeter Array (ALMA) Large Program designed to measure the core mass function (CMF) of 15 protoclusters chosen to span their early evolutionary stages. It further aims to understand their kinematics, chemistry, and the impact of gas inflow, accretion, and dynamics on the CMF. We present here the first release of the ALMA-IMF line data cubes (DR1), produced from the combination of two ALMA 12m-array configurations. The data include 12 spectral windows, with eight at 1.3mm and four at 3mm. The broad spectral coverage of ALMA-IMF (~6.7 GHz bandwidth coverage per field) hosts a wealth of simple atomic, molecular, ionised, and complex organic molecular lines. We describe the line cube calibration done by ALMA and the subsequent calibration and imaging we performed. We discuss our choice of calibration parameters and optimisation of the cleaning…
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