4.7 Article

The integrated properties of the molecular clouds from the JCMT CO(3-2) High-Resolution Survey

期刊

出版社

OXFORD UNIV PRESS
DOI: 10.1093/mnras/sty3283

关键词

methods: analytical; techniques: image processing; ISM: clouds; ISM: structure

资金

  1. Deutsche Forschungsgemeinschaft (DFG) [SFB956C]
  2. Natural Sciences and Engineering Research Council of Canada (NSERC) [RGPIN-2017-03987]
  3. UK Science and Technology Facilities Council [ST/N000706/1]
  4. STFC [ST/N000706/1] Funding Source: UKRI

向作者/读者索取更多资源

We define the molecular cloud properties of the Milky Way first quadrant using data from the JCMT CO(3-2) High-Resolution Survey. We apply the Spectral Clustering for Interstellar Molecular Emission Segmentation (SCIMES) algorithm to extract objects from the full-resolution data set, creating the first catalogue of molecular clouds with a large dynamic range in spatial scale. We identify more than 85000 clouds with two clear sub-samples: similar to 35500 well-resolved objects and similar to 540 clouds with well-defined distance estimations. Only 35 per cent of the catalogued clouds (as well as the total flux encompassed by them) appear enclosed within the Milky Way spiral arms. The scaling relationships between clouds with known distances are comparable to the characteristics of the clouds identified in previous surveys. However, these relations between integrated properties, especially from the full catalogue, show a large intrinsic scatter (similar to 0.5 dex), comparable to other cloud catalogues of the Milky Way and nearby galaxies. The mass distribution of molecular clouds follows a truncated-power-law relationship over three orders of magnitude in mass with a form dN/dM proportional to M--(1.)7 with a clearly defined truncation at an upper mass of M-0 similar to 3 x 10(6)M(circle dot), consistent with theoretical models of cloud formation controlled by stellar feedback and shear. Similarly, the cloud population shows a power-law distribution of size with dN/dR proportional to R-2.8 with a truncation at R-0 = 70 pc.

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