Stellar structures, molecular gas, and star formation across the PHANGS sample of nearby galaxies
Author
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Querejeta, M.
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Schinnerer, E.
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Meidt, S.
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Sun, J.
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Leroy, A. K.
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Emsellem, E.
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Klessen, R. S.
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Muñoz Mateos, J. C.
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Salo, H.
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Laurikainen, E.
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Beslic, I.
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Blanc Mendiberri, Guillermo Alberto
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Chevance, M.
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Dale, D. A.
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Eibensteiner, C.
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Faesi, C.
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García Rodríguez, A.
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Glover, S. C. O.
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Grasha, K.
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Henshaw, J.
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Herrera, C.
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Hughes, A.
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Kreckel, K.
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Kruijssen, J. M. D.
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Liu, D.
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Murphy, E. J.
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Pan, H-A
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Pety, J.
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Razza, Alessandro
Author
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Rosolowsky, E.
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Saito, T.
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Schruba, A.
Author
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Usero, A.
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Watkins, E. J.
Author
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Williams, T. G.
Admission date
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2022-03-14T18:39:59Z
Available date
dc.date.available
2022-03-14T18:39:59Z
Publication date
dc.date.issued
2021
Cita de ítem
dc.identifier.citation
Astronomy & Astrophysics manuscript no. main September 13, 2021
es_ES
Identifier
dc.identifier.other
10.1051/0004-6361/202140695
Identifier
dc.identifier.uri
https://repositorio.uchile.cl/handle/2250/184176
Abstract
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We identify stellar structures in the PHANGS sample of 74 nearby galaxies and construct morphological masks of sub-galactic environments based on Spitzer 3.6 mu m images. At the simplest level, we distinguish five environments: centres, bars, spiral arms, interarm regions, and discs without strong spirals. Slightly more sophisticated masks include rings and lenses, which are publicly released but not explicitly used in this paper. We examine trends with environment in the molecular gas content, star formation rate, and depletion time using PHANGS-ALMA CO(2-1) intensity maps and tracers of star formation. The interarm regions and discs without strong spirals clearly dominate in area, whereas molecular gas and star formation are quite evenly distributed among the five basic environments. We reproduce the molecular Kennicutt-Schmidt relation with a slope compatible with unity within the uncertainties and without significant slope differences among environments. In contrast to what has been suggested by early studies, we find that bars are not always deserts devoid of gas and star formation, but instead they show large diversity. Similarly, spiral arms do not account for most of the gas and star formation in disc galaxies, and they do not have shorter depletion times than the interarm regions. Spiral arms accumulate gas and star formation, without systematically boosting the star formation efficiency. Centres harbour remarkably high surface densities and on average shorter depletion times than other environments. Centres of barred galaxies show higher surface densities and wider distributions compared to the outer disc; yet, depletion times are similar to unbarred galaxies, suggesting highly intermittent periods of star formation when bars episodically drive gas inflow, without enhancing the central star formation efficiency permanently. In conclusion, we provide quantitative evidence that stellar structures in galaxies strongly affect the organisation of molecular gas and star formation, but their impact on star formation efficiency is more subtle.
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Patrocinador
dc.description.sponsorship
Instituto de Salud Carlos III
Spanish Government PID2019-106027GA-C44
European Research Council (ERC) 694343
National Science Foundation (NSF)
National Research Foundation of Korea 1615105
1615109
1653300
National Aeronautics and Space Administration (NASA) under ADAP grants NNX16AF48G
NNX17AF39G
German Research Foundation (DFG) SFB 881
138713538
Heidelberg Cluster of Excellence "STRUCTURES" in the framework of Germany's Excellence Strategy EXC-2181/1
390900948
European Research Council via the ERC Synergy Grant "ECOGAL" 855130
SKA South Africa 694343
721463
726384/Empire
Academy of Finland 297738
German Research Foundation (DFG) KR4801/1-1
KR4598/2-1
KR4801/2-1
BI1546/3-1
European Research Council (ERC) 714907
National Science Foundation (NSF) 1903946
Spanish Government AYA2016-79006-P
Spanish Government
European Commission PID2019-108765GB-I00
Programme National Cosmology et Galaxies (PNCG) of CNRS/INSU
INP
IN2P3
French Atomic Energy Commission
Centre National D'etudes Spatiales
Programme National 'Physique et Chimie du Milieu Interstellaire' (PCMI) of CNRS/INSU
INC/INP - CEA
Natural Sciences and Engineering Research Council of Canada (NSERC) RGPIN-2017-03987
Spanish funding grant (MINECO/FEDER) AYA2016-79006-P
Spanish funding grant (MCIU/AEI/FEDER) PGC2018-094671-B-I00
Spanish funding grant (MICINN) PID2019-108765GB-I00
German Research Foundation (DFG) 138713538 - SFB 881
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Lenguage
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en
es_ES
Publisher
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EDP
es_ES
Type of license
dc.rights
Attribution-NonCommercial-NoDerivs 3.0 United States