Spectral imaging of the Central Molecular Zone in multiple 3-mm molecular lines
P. A. Jones, M. G. Burton, M. R. Cunningham, M. A. Requena-Torres, K., M. Menten, P. Schilke, A. Belloche, S. Leurini, J. Martin-Pintado, J. Ott, A., J. Walsh

TL;DR
This study maps 20 molecular lines in the Central Molecular Zone using spectral imaging, revealing similar large-scale molecular distributions and analyzing line ratios, optical depths, and isotopologue behaviors to compare with extragalactic sources.
Contribution
First comprehensive spectral imaging of multiple molecular lines in the CMZ, including principal component analysis and comparison with extragalactic molecular emission.
Findings
Large-scale molecular distributions are very similar across lines.
Line ratios and optical depths vary with velocity and location.
Isotopologue line ratios increase with red-shifted velocity in some regions.
Abstract
We have mapped 20 molecular lines in the Central Molecular Zone (CMZ) around the Galactic Centre, emitting from 85.3 to 93.3 GHz. This work used the 22-m Mopra radio telescope in Australia, equipped with the 8-GHz bandwidth UNSW-MOPS digital filter bank, obtaining \sim 2 km/s spectral and \sim 40 arcsec spatial resolution. The lines measured include emission from the c-C3H2, CH3CCH, HOCO+, SO, H13CN, H13CO+, SO, H13NC, C2H, HNCO, HCN, HCO+, HNC, HC3N, 13CS and N2H+ molecules. The area covered is Galactic longitude -0.7 to 1.8 deg. and latitude -0.3 to 0.2 deg., including the bright dust cores around Sgr A, Sgr B2, Sgr C and G1.6-0.025. We present images from this study and conduct a principal component analysis on the integrated emission from the brightest 8 lines. This is dominated by the first component, showing that the large-scale distribution of all molecules are very similar. We…
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