4.7 Article

Giant molecular cloud catalogues for PHANGS-ALMA: methods and initial results

期刊

出版社

OXFORD UNIV PRESS
DOI: 10.1093/mnras/stab085

关键词

stars: formation; ISM: clouds; galaxies: individual (NGC 0628, NGC 1637, NGC 2903, NGC 3521, NGC 3621, NGC 3627, NGC 4826, NGC 5068, NGC 5643, NGC 6300)

资金

  1. Natural Sciences and Engineering Research Council of Canada (NSERC) [RGPIN-2017-03987]
  2. Programme National Cosmology et Galaxies (PNCG) of CNRS/INSU
  3. INP
  4. IN2P3 - CEA
  5. IN2P3 - CNES
  6. Programme National 'Physique et Chimie du Milieu Interstellaire' (PCMI) of CNRS/INSU
  7. INC/INP - CEA
  8. INC/INP - CNES
  9. National Science Foundation (NSF) [1615105, 1615109, 1653300]
  10. National Aeronautics and Space Administration (NASA) under ADAP grant [NNX16AF48G, NNX17AF39G]
  11. Spanish funding (MINECO/FEDER) [AYA2016-79006-P]
  12. Spanish funding (MCIU/AEI/FEDER) [PGC2018094671-B-I00]
  13. Spanish funding (MICINN) [PID2019-108765GB-I00]
  14. European Research Council (ERC) under the European Union's Horizon 2020 Framework Programme [694343]
  15. European Union's Horizon 2020 Framework Programme [726384/EMPIRE]
  16. Deutsche Forschungsgemeinschaft (DFG) [KR4801/1-1]
  17. DFG Sachbeihilfe [KR4801/21]
  18. European Research Council (ERC) under the European Union's Horizon 2020 Framework Programme via the ERC Starting Grant MUSTANG [714907]
  19. German Research Foundation (DFG) via the Collaborative Research Center [SFB 881, 138713538]
  20. Heidelberg Cluster of Excellence STRUCTURES [EXC-2181/1 -390900948]
  21. European Research Council via the ERC Synergy Grant ECOGAL [855130]
  22. ERC Advanced Grant STARLIGHT [339177]
  23. European Research Council (ERC) [339177] Funding Source: European Research Council (ERC)
  24. Division Of Astronomical Sciences
  25. Direct For Mathematical & Physical Scien [1615109, 1615105] Funding Source: National Science Foundation
  26. Division Of Astronomical Sciences
  27. Direct For Mathematical & Physical Scien [1653300] Funding Source: National Science Foundation

向作者/读者索取更多资源

This study proposes improved methods for segmenting CO emission into individual molecular clouds, revealing variations in physical properties among different galaxies through analysis of 10 nearby galaxies.
We present improved methods for segmenting CO emission from galaxies into individual molecular clouds, providing an update to the CPROPS algorithms presented by Rosolowsky & Leroy. The new code enables both homogenization of the noise and spatial resolution among data, which allows for rigorous comparative analysis. The code also models the completeness of the data via false source injection and includes an updated segmentation approach to better deal with blended emission. These improved algorithms are implemented in a publicly available PYTHON package, PYCPROPS. We apply these methods to 10 of the nearest galaxies in the PHANGS-ALMA survey, cataloguing CO emission at a common 90 pc resolution and a matched noise level. We measure the properties of 4986 individual clouds identified in these targets. We investigate the scaling relations among cloud properties and the cloud mass distributions in each galaxy. The physical properties of clouds vary among galaxies, both as a function of galactocentric radius and as a function of dynamical environment. Overall, the clouds in our target galaxies are well-described by approximate energy equipartition, although clouds in stellar bars and galaxy centres show elevated line widths and virial parameters. The mass distribution of clouds in spiral arms has a typical mass scale that is 2.5x larger than interarm clouds and spiral arms clouds show slightly lower median virial parameters compared to interarm clouds (1.2 versus 1.4).

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