# SEDIGISM: Structure, excitation, and dynamics of the inner Galactic   interstellar medium

**Authors:** F. Schuller, T. Csengeri, J. S. Urquhart, A. Duarte-Cabral, P. J., Barnes, A. Giannetti, A. K. Hernandez, S. Leurini, M. Mattern, S.-N. X., Medina, C. Agurto, F. Azagra, L. D. Anderson, M. T. Beltr\'an, H. Beuther, S., Bontemps, L. Bronfman, C. L. Dobbs, M. Dumke, R. Finger, A. Ginsburg, E., Gonzalez, T. Henning, J. Kauffmann, F. Mac-Auliffe, K. M. Menten, F. M., Montenegro-Montes, T. J. T. Moore, E. Muller, R. Parra, J.-P., Perez-Beaupuits, A. Pettitt, D. Russeil, \'A. S\'anchez-Monge, P. Schilke, E., Schisano, S. Suri, L. Testi, K. Torstensson, P. Venegas, K. Wang, M. Wienen,, F. Wyrowski, and A. Zavagno

arXiv: 1701.04712 · 2017-05-17

## TL;DR

The SEDIGISM survey provides a comprehensive, high-resolution spectroscopic map of the inner Galactic interstellar medium using 13CO data, revealing detailed structures and physical conditions of molecular clouds.

## Contribution

This work presents the first homogeneous, large-scale 13CO(2-1) survey of the inner Galaxy, enhancing understanding of molecular cloud structure and dynamics.

## Key findings

- Detection of compact clumps, diffuse clouds, and filaments.
- Combined data allows 3D mapping of excitation temperature and optical depth.
- Provides a detailed view of the cold, dense interstellar medium.

## Abstract

The origin and life-cycle of molecular clouds are still poorly constrained, despite their importance for understanding the evolution of the interstellar medium. We have carried out a systematic, homogeneous, spectroscopic survey of the inner Galactic plane, in order to complement the many continuum Galactic surveys available with crucial distance and gas-kinematic information. Our aim is to combine this data set with recent infrared to sub-millimetre surveys at similar angular resolutions. The SEDIGISM survey covers 78 deg^2 of the inner Galaxy (-60 deg < l < +18 deg, |b| < 0.5 deg) in the J=2-1 rotational transition of 13CO. This isotopologue of CO is less abundant than 12CO by factors up to 100. Therefore, its emission has low to moderate optical depths, and higher critical density, making it an ideal tracer of the cold, dense interstellar medium. The data have been observed with the SHFI single-pixel instrument at APEX. The observational setup covers the 13CO(2-1) and C18O(2-1) lines, plus several transitions from other molecules. The observations have been completed. Data reduction is in progress, and the final data products will be made available in the near future. Here we give a detailed description of the survey and the dedicated data reduction pipeline. Preliminary results based on a science demonstration field covering -20 deg < l < -18.5 deg are presented. Analysis of the 13CO(2-1) data in this field reveals compact clumps, diffuse clouds, and filamentary structures at a range of heliocentric distances. By combining our data with data in the (1-0) transition of CO isotopologues from the ThrUMMS survey, we are able to compute a 3D realization of the excitation temperature and optical depth in the interstellar medium. Ultimately, this survey will provide a detailed, global view of the inner Galactic interstellar medium at an unprecedented angular resolution of ~30".

## Full text

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## Figures

39 figures with captions in the complete paper: https://tomesphere.com/paper/1701.04712/full.md

## References

138 references — full list in the complete paper: https://tomesphere.com/paper/1701.04712/full.md

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Source: https://tomesphere.com/paper/1701.04712