High angular resolution observations towards OMC-2 FIR 4: Dissecting an intermediate-mass protocluster
A. L\'opez-Sepulcre, V. Taquet, \'A. S\'anchez-Monge, C. Ceccarelli,, C. Dominik, M. Kama, E. Caux, F. Fontani, A. Fuente, P.T.P. Ho, R. Neri and, Y. Shimajiri

TL;DR
This study uses high-resolution observations to dissect the complex structure of the intermediate-mass protocluster OMC-2 FIR 4, revealing multiple sources, chemical differentiation, and ionized regions within a compact area.
Contribution
It provides the first high-resolution imaging of OMC-2 FIR 4, identifying multiple embedded sources and their properties, advancing understanding of intermediate-mass star formation.
Findings
Three spatially resolved sources identified within OMC-2 FIR 4.
Presence of a potential young B3-B4 star in the region.
Chemical differentiation suggests varying evolutionary stages among sources.
Abstract
OMC-2 FIR 4 is one of the closest known young intermediate-mass protoclusters, located at a distance of 420 pc in Orion. This region is one of the few where the complete 500-2000 GHz spectrum has been observed with the heterodyne spectrometer HIFI on board the Herschel satellite, and unbiased spectral surveys at 0.8, 1, 2 and 3 mm have been obtained with the JCMT and IRAM 30-m telescopes. In order to investigate the morphology of this region, we used the IRAM Plateau de Bure Interferometer to image OMC-2 FIR 4 in the 2-mm continuum emission, as well as in DCO+(2-1), DCN(2-1), C34S(3-2), and several CH3OH lines. In addition, we analysed observations of the NH3(1,1) and (2,2) inversion transitions made with the Very Large Array of the NRAO. The resulting maps have an angular resolution which allows us to resolve structures of 5", equivalent to 2000 AU. Our observations reveal three…
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