Journal article
Physical properties and scaling relations of molecular clouds: the effect of stellar feedback
- Abstract:
- Using hydrodynamical simulations of entire galactic discs similar to the Milky Way (MW), reaching 4.6pc resolution, we study the origins of observed physical properties of giant molecular clouds (GMCs). We find that efficient stellar feedback is a necessary ingredient in order to develop a realistic interstellar medium, leading to molecular cloud masses, sizes, velocity dispersions, and virial parameters in excellent agreement with MW observations. GMC scaling relations observed in the MW, such as the mass-size (M–R), velocity dispersion-size (σ–R), and the σ–RΣ relations, are reproduced in a feedback-driven ISM when observed in projection, with M∝R2.3 and σ∝R0.56. When analysed in 3D, GMC scaling relations steepen significantly, indicating potential limitations of our understanding of molecular cloud 3D structure from observations. Furthermore, we demonstrate how a GMC population’s underlying distribution of virial parameters can strongly influence the scatter in derived scaling relations. Finally, we show that GMCs with nearly identical global properties exist in different evolutionary stages, where a majority of clouds being either gravitationally bound or expanding, but with a significant fraction being compressed by external ISM pressure, at all times.
- Publication status:
- Published
- Peer review status:
- Peer reviewed
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(Preview, Version of record, pdf, 6.5MB, Terms of use)
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- Publisher copy:
- 10.1093/mnras/sty1595
Authors
+ Knut and Alice Wallenberg Foundation
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- Funding agency for:
- Agertz, O
- Renaud, F
- Grant:
- 2014-5791
- ERC-StG-335936
+ European Research Council
More from this funder
- Funding agency for:
- Grisdale, K
- Renaud, F
- Grant:
- ERC-StG-335936
- ERC-StG-335936
- Publisher:
- Oxford University Press
- Journal:
- Monthly Notices of the Royal Astronomical Society More from this journal
- Volume:
- 479
- Issue:
- 3
- Pages:
- 3167–3180
- Publication date:
- 2018-06-15
- Acceptance date:
- 2018-06-13
- DOI:
- EISSN:
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1365-2966
- ISSN:
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0035-8711
- Pubs id:
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pubs:860091
- UUID:
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uuid:81b4964b-ead0-4241-b1f7-5f8052860d2c
- Local pid:
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pubs:860091
- Source identifiers:
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860091
- Deposit date:
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2018-07-06
Terms of use
- Copyright holder:
- © 2018 Grisdale, et al Published by Oxford University Press on behalf of the Royal Astronomical Society
- Copyright date:
- 2018
- Notes:
- This is the publisher's version of the article. The final version is available online from Oxford University Press at: 10.1093/mnras/sty1595
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