The physical and chemical structure of Sagittarius B2, VIII. Full molecular line survey of hot cores
T. M\"oller, P. Schilke, \'A. S\'anchez-Monge, A. Schmiedeke

TL;DR
This study presents a comprehensive ALMA spectral line survey of Sagittarius B2's hot cores, revealing diverse molecular compositions and evolutionary stages, enhancing understanding of high-mass star formation in this complex.
Contribution
It provides the first extensive molecular line survey of Sgr B2 hot cores, identifying 65 isotopologs and analyzing their chemical and physical properties with high sensitivity.
Findings
Sgr B2(N) hosts more complex organic molecules than M cores.
Different evolutionary phases are identified across sources.
Sulfur-bearing molecules are more abundant in N than in M.
Abstract
The giant molecular cloud complex Sagittarius B2 (Sgr~B2) in the central molecular zone of our Galaxy hosts several high-mass star formation sites, with Sgr~B2(M) and Sgr~B2(N) being the main centers of activity. This analysis aims to comprehensively model each core spectrum, considering molecular lines, dust attenuation, and free-free emission interactions. We describe the molecular content analysis of each hot core and identify the chemical composition of detected sources. Using ALMA's high sensitivity, we aim to characterize the hot core population in Sgr~B2(M) and N, gaining a better understanding of the different evolutionary phases of star formation processes in this complex. We conducted an unbiased ALMA spectral line survey of 47 sources in band 6 (211-275 GHz). Chemical composition and column densities were derived using XCLASS, assuming local thermodynamic equilibrium.…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Astronomy and Astrophysical Research
