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Publication details

Document type
Journal articles

Document subtype
Full paper

Title
Cosmic evolution of molecular gas mass density from an empirical relationship between L1.4 GHz and L?CO

Participants in the publication
G Orellana-González (Author)
E Ibar (Author)
R Leiton (Author)
A P Thomson (Author)
C Cheng (Author)
R J Ivison (Author)
R Herrera-Camus (Author)
H Messias (Author)
IA
P Calderón-Castillo (Author)
T M Hughes (Author)
L Leeuw (Author)

Date of Publication
2020-05-27

Where published
Monthly Notices of the Royal Astronomical Society

Publication Identifiers
ISSN - 1365-2966

Publisher
Oxford University Press (OUP)

Volume
495
Number
2

Number of pages
10
Starting page
1760
Last page
1770

Document Identifiers
DOI - https://doi.org/10.1093/mnras/staa1171
URL - http://dx.doi.org/10.1093/mnras/staa1171

Rankings
SCIMAGO Q1 (2019) - 1.937 - Astronomy and Astrophysics
SCIMAGO Q1 (2019) - 1.937 - Space and Planetary Science
SCOPUS Q1 (2019) - 8.5 - Astronomy and Astrophysics
SCOPUS Q1 (2019) - 8.5 - Space and Planetary Science


Export

APA
G Orellana-González, E Ibar, R Leiton, A P Thomson, C Cheng, R J Ivison, R Herrera-Camus, H Messias, P Calderón-Castillo, T M Hughes, L Leeuw, (2020). Cosmic evolution of molecular gas mass density from an empirical relationship between L1.4 GHz and L?CO. Monthly Notices of the Royal Astronomical Society, 495, 1760-1770. ISSN 1365-2966. eISSN . http://dx.doi.org/10.1093/mnras/staa1171

IEEE
G Orellana-González, E Ibar, R Leiton, A P Thomson, C Cheng, R J Ivison, R Herrera-Camus, H Messias, P Calderón-Castillo, T M Hughes, L Leeuw, "Cosmic evolution of molecular gas mass density from an empirical relationship between L1.4 GHz and L?CO" in Monthly Notices of the Royal Astronomical Society, vol. 495, pp. 1760-1770, 2020. 10.1093/mnras/staa1171

BIBTEX
@article{50852, author = {G Orellana-González and E Ibar and R Leiton and A P Thomson and C Cheng and R J Ivison and R Herrera-Camus and H Messias and P Calderón-Castillo and T M Hughes and L Leeuw}, title = {Cosmic evolution of molecular gas mass density from an empirical relationship between L1.4 GHz and L?CO}, journal = {Monthly Notices of the Royal Astronomical Society}, year = 2020, pages = {1760-1770}, volume = 495 }