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  5. The SEDIGISM survey: Molecular cloud morphology

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Article
en
2022

The SEDIGISM survey: Molecular cloud morphology

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en
2022
Vol 663
Vol. 663
DOI: 10.1051/0004-6361/202142428

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Peter J Barnes
Peter J Barnes

Imperial College London

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K. R. Neralwar
Dario Colombo
A. Duarte-Cabral
+22 more

Abstract

We present one of the very first extensive classifications of a large sample of molecular clouds based on their morphology. This is achieved using a recently published catalogue of 10663 clouds obtained from the first data release of the SEDIGISM survey. The clouds are classified into four different morphologies by visual inspection and using an automated algorithm -- J plots. The visual inspection also serves as a test for the J plots algorithm, as this is the first time it has been used on molecular gas. Generally, it has been found that the structure of molecular clouds is highly filamentary and our observations indeed verify that most of our molecular clouds are elongated structures. Based on our visual classification of the 10663 SEDIGISM clouds, 15% are ring-like, 57% are elongated, 15% are concentrated and 10% are clumpy clouds. The remaining clouds do not belong to any of these morphology classes and are termed unclassified. We compare the SEDIGISM molecular clouds with structures identified through other surveys, i.e. ATLASGAL elongated structures and the bubbles from Milky Way Project (MWP). We find that many of the ATLASGAL and MWP structures are velocity coherent. ATLASGAL elongated structures overlap with ~ 21% of the SEDIGISM elongated structures (elongated and clumpy clouds) and MWP bubbles overlap with ~ 25% of the SEDIGISM ring-like clouds. We also analyse the star-formation associated with different cloud morphologies using two different techniques. The first technique examines star formation efficiency (SFE) and the dense gas fraction (DGF), based on SEDIGISM clouds and ATLASGAL clumps data. The second technique uses the high-mass star formation (HMSF) threshold for molecular clouds. The results indicate that clouds with ring-like and clumpy morphologies show a higher degree of star formation.

How to cite this publication

K. R. Neralwar, Dario Colombo, A. Duarte-Cabral, J. S. Urquhart, M. Mattern, F. Wyrowski, K. M. Menten, Peter J Barnes, Á. Sánchez-Monge, H. Beuther, A. J. Rigby, P. Mazumdar, David Eden, T. Csengeri, Clare L. Dobbs, V. S. Veena, S. Neupane, Thomas Henning, F. Schüller, S. Leurini, M. Wienen, A. Y. Yang, S. E. Ragan, S.-N. X. Medina, Q. Nguyễn Lương (2022). The SEDIGISM survey: Molecular cloud morphology. , 663, DOI: https://doi.org/10.1051/0004-6361/202142428.

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Publication Details

Type

Article

Year

2022

Authors

25

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1051/0004-6361/202142428

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