Exploring molecular complexity in the Galactic Center with ALMA
arXiv:1709.00166 · doi:10.1017/S1743921317007815
Abstract
The search for complex organic molecules (COMs) in the ISM has revealed chemical species of ever greater complexity. This search relies heavily on the progress made in the laboratory to characterize the rotational spectra of these molecules. Observationally, the advent of ALMA with its high angular resolution and sensitivity has allowed to reduce the spectral confusion and detect low-abundance molecules that could not be probed before. We present results of the EMoCA survey conducted with ALMA toward the star-forming region Sgr B2(N). This spectral line survey aims at deciphering the molecular content of Sgr B2(N) in order to test the predictions of astrochemical models and gain insight into the chemical processes at work in the ISM. We report on the tentative detection of N-methylformamide, on deuterated COMs, and on the detection of a branched alkyl molecule. Prospects for probing molecular complexity in the ISM even further are discussed at the end.
Invited contribution to appear in "Astrochemistry VII -- Through the Cosmos from Galaxies to Planets", proceedings of the IAU Symposium No. 332, 2017, Puerto Varas, Chile. M. Cunningham, T. Millar and Y. Aikawa, eds. (12 pages, 8 figures)
References in corpus (5)
- Photochemistry and astrochemistry: photochemical pathways to interstellar complex organic molecules
- Detection of a branched alkyl molecule in the interstellar medium: iso-propyl cyanide
- Multilayer formation and evaporation of deuterated ices in prestellar and protostellar cores
- The ALMA-PILS survey: Detection of CHNCO toward the low-mass protostar IRAS 16293-2422 and laboratory constraints on its formation
- Exploring molecular complexity with ALMA (EMoCA): Detection of three new hot cores in Sagittarius B2(N)