Herschel-ATLAS/GAMA: how does the far-IR luminosity function depend on galaxy group properties?

We use the Herschel Astrophysical Terahertz Large Area Survey (H-ATLAS) Phase I data to study the conditional luminosity function of far-IR (250 μm) selected galaxies in optically selected galaxy groups from the Galaxy And Mass Assembly (GAMA) spectroscopic survey, as well as environmental effects o...

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Main Authors: Guo, Q., Lacey, C., Norberg, P., Cole, S., Baugh, C., Frenk, C., Cooray, A., Dye, S., Bourne, N., Dunne, L., Eales, S., Ivison, R.J., Maddox, S.J., Alpasan, M., Baldry, I., Bland-Hawthorn, J., Driver, S.P., Robotham, A.
Format: Article
Published: Oxford University Press 2014
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Online Access:https://eprints.nottingham.ac.uk/42410/
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author Guo, Q.
Lacey, C.
Norberg, P.
Cole, S.
Baugh, C.
Frenk, C.
Cooray, A.
Dye, S.
Bourne, N.
Dunne, L.
Eales, S.
Ivison, R.J.
Maddox, S.J.
Alpasan, M.
Baldry, I.
Bland-Hawthorn, J.
Driver, S.P.
Robotham, A.
author_facet Guo, Q.
Lacey, C.
Norberg, P.
Cole, S.
Baugh, C.
Frenk, C.
Cooray, A.
Dye, S.
Bourne, N.
Dunne, L.
Eales, S.
Ivison, R.J.
Maddox, S.J.
Alpasan, M.
Baldry, I.
Bland-Hawthorn, J.
Driver, S.P.
Robotham, A.
author_sort Guo, Q.
building Nottingham Research Data Repository
collection Online Access
description We use the Herschel Astrophysical Terahertz Large Area Survey (H-ATLAS) Phase I data to study the conditional luminosity function of far-IR (250 μm) selected galaxies in optically selected galaxy groups from the Galaxy And Mass Assembly (GAMA) spectroscopic survey, as well as environmental effects on the far-IR-to-optical colour. We applied two methods, which gave consistent results for the far-IR conditional luminosity functions. The direct matching method matches H-ATLAS sources to GAMA/SDSS (Sloan Digital Sky Survey) galaxies, then links the optical counterparts to GAMA groups. The stacking method counts the number of far-IR sources within the projected radii of GAMA groups, subtracting the local background. We investigated the dependence of the far-IR (250 μm) luminosity function on group mass in the range 1012 < Mh < 1014 h−1 M⊙ and on redshift in the range 0 < z < 0.4, using a sample of 3000 groups containing H-ATLAS sources with GAMA redshifts over an area of 126 deg2. We find that the characteristic 250 μm luminosity, L*(250), increases with group mass up to Mh ∼ 1013 h−1 M⊙, but is roughly constant above this, while it increases with redshift at high group masses, but less so at low masses. We also find that the group far-IR luminosity-to-mass ratio L(250)/Mh increases with redshift and is higher in low-mass groups. We estimate that around 70 per cent of the 250 μm luminosity density in the local Universe is contributed by groups with Mh > 1012 h−1 M⊙. We also find that the far-IR-to-optical colours of H-ATLAS galaxies are independent of group mass over the range 1012 < Mh < 1014 h−1 M⊙ in the local Universe. We also compare our observational results with recent semi-analytical models, and find that none of these galaxy formation models can reproduce the conditional far-IR luminosity functions of galaxy groups.
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spelling nottingham-424102020-05-04T16:49:19Z https://eprints.nottingham.ac.uk/42410/ Herschel-ATLAS/GAMA: how does the far-IR luminosity function depend on galaxy group properties? Guo, Q. Lacey, C. Norberg, P. Cole, S. Baugh, C. Frenk, C. Cooray, A. Dye, S. Bourne, N. Dunne, L. Eales, S. Ivison, R.J. Maddox, S.J. Alpasan, M. Baldry, I. Bland-Hawthorn, J. Driver, S.P. Robotham, A. We use the Herschel Astrophysical Terahertz Large Area Survey (H-ATLAS) Phase I data to study the conditional luminosity function of far-IR (250 μm) selected galaxies in optically selected galaxy groups from the Galaxy And Mass Assembly (GAMA) spectroscopic survey, as well as environmental effects on the far-IR-to-optical colour. We applied two methods, which gave consistent results for the far-IR conditional luminosity functions. The direct matching method matches H-ATLAS sources to GAMA/SDSS (Sloan Digital Sky Survey) galaxies, then links the optical counterparts to GAMA groups. The stacking method counts the number of far-IR sources within the projected radii of GAMA groups, subtracting the local background. We investigated the dependence of the far-IR (250 μm) luminosity function on group mass in the range 1012 < Mh < 1014 h−1 M⊙ and on redshift in the range 0 < z < 0.4, using a sample of 3000 groups containing H-ATLAS sources with GAMA redshifts over an area of 126 deg2. We find that the characteristic 250 μm luminosity, L*(250), increases with group mass up to Mh ∼ 1013 h−1 M⊙, but is roughly constant above this, while it increases with redshift at high group masses, but less so at low masses. We also find that the group far-IR luminosity-to-mass ratio L(250)/Mh increases with redshift and is higher in low-mass groups. We estimate that around 70 per cent of the 250 μm luminosity density in the local Universe is contributed by groups with Mh > 1012 h−1 M⊙. We also find that the far-IR-to-optical colours of H-ATLAS galaxies are independent of group mass over the range 1012 < Mh < 1014 h−1 M⊙ in the local Universe. We also compare our observational results with recent semi-analytical models, and find that none of these galaxy formation models can reproduce the conditional far-IR luminosity functions of galaxy groups. Oxford University Press 2014-06-18 Article PeerReviewed Guo, Q., Lacey, C., Norberg, P., Cole, S., Baugh, C., Frenk, C., Cooray, A., Dye, S., Bourne, N., Dunne, L., Eales, S., Ivison, R.J., Maddox, S.J., Alpasan, M., Baldry, I., Bland-Hawthorn, J., Driver, S.P. and Robotham, A. (2014) Herschel-ATLAS/GAMA: how does the far-IR luminosity function depend on galaxy group properties? Monthly Notices of the Royal Astronomical Society, 442 (3). pp. 2253-2270. ISSN 1365-2966 galaxies: clusters: general galaxies: formation galaxies: haloes galaxies: luminosity function mass function cosmology: theory infrared: galaxies https://academic.oup.com/mnras/article-lookup/doi/10.1093/mnras/stu962 doi:10.1093/mnras/stu962 doi:10.1093/mnras/stu962
spellingShingle galaxies: clusters: general
galaxies: formation
galaxies: haloes
galaxies: luminosity function
mass function
cosmology: theory
infrared: galaxies
Guo, Q.
Lacey, C.
Norberg, P.
Cole, S.
Baugh, C.
Frenk, C.
Cooray, A.
Dye, S.
Bourne, N.
Dunne, L.
Eales, S.
Ivison, R.J.
Maddox, S.J.
Alpasan, M.
Baldry, I.
Bland-Hawthorn, J.
Driver, S.P.
Robotham, A.
Herschel-ATLAS/GAMA: how does the far-IR luminosity function depend on galaxy group properties?
title Herschel-ATLAS/GAMA: how does the far-IR luminosity function depend on galaxy group properties?
title_full Herschel-ATLAS/GAMA: how does the far-IR luminosity function depend on galaxy group properties?
title_fullStr Herschel-ATLAS/GAMA: how does the far-IR luminosity function depend on galaxy group properties?
title_full_unstemmed Herschel-ATLAS/GAMA: how does the far-IR luminosity function depend on galaxy group properties?
title_short Herschel-ATLAS/GAMA: how does the far-IR luminosity function depend on galaxy group properties?
title_sort herschel-atlas/gama: how does the far-ir luminosity function depend on galaxy group properties?
topic galaxies: clusters: general
galaxies: formation
galaxies: haloes
galaxies: luminosity function
mass function
cosmology: theory
infrared: galaxies
url https://eprints.nottingham.ac.uk/42410/
https://eprints.nottingham.ac.uk/42410/
https://eprints.nottingham.ac.uk/42410/