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KROSS–SAMI: a direct IFS comparison of the Tully–Fisher relation across 8 Gyr since z ≈ 1

Authors :
Matt J. Jarvis
Sarah M. Sweet
Samuel N. Richards
Alfred L. Tiley
Danail Obreschkow
Luca Cortese
Anne M. Medling
Ian Smail
Ray M. Sharples
Scott M. Croom
Helen L. Johnson
David Sobral
O. J. Turner
Matt S. Owers
C. Tonini
Karl Glazebrook
J. Bland-Hawthorn
Iraklis S. Konstantopoulos
Georgios E. Magdis
Richard G. Bower
Nuria P. F. Lorente
John P. Stott
Christopher Harrison
Jeremy Mould
Martin Bureau
Andrew Bunker
Julia J. Bryant
Jon Lawrence
Michael Goodwin
A. M. Swinbank
Source :
Monthly notices of the Royal Astronomical Society, 2019, Vol.482(2), pp.2166-2188 [Peer Reviewed Journal]
Publication Year :
2019
Publisher :
Royal Astronomical Society, 2019.

Abstract

We construct Tully–Fisher relations (TFRs), from large samples of galaxies with spatially resolved H α emission maps from the K-band Multi-Object Spectrograph (KMOS) Redshift One Spectroscopic Survey (KROSS) at z ≈ 1. We compare these to data from the Sydney-Australian-Astronomical-Observatory Multi-object Integral-Field Spectrograph (SAMI) Galaxy Survey at z ≈ 0. We stringently match the data quality of the latter to the former, and apply identical analysis methods and sub-sample selection criteria to both to conduct a direct comparison of the absolute K-band magnitude and stellar mass TFRs at z ≈ 1 and 0. We find that matching the quality of the SAMI data to that of KROSS results in TFRs that differ significantly in slope, zero-point, and (sometimes) scatter in comparison to the corresponding original SAMI relations. These differences are in every case as large as or larger than the differences between the KROSS z ≈ 1 and matched SAMI z ≈ 0 relations. Accounting for these differences, we compare the TFRs at z ≈ 1 and 0. For disc-like, star-forming galaxies we find no significant difference in the TFR zero-points between the two epochs. This suggests the growth of stellar mass and dark matter in these types of galaxies is intimately linked over this ≈8 Gyr period.

Details

Language :
English
Database :
OpenAIRE
Journal :
Monthly notices of the Royal Astronomical Society, 2019, Vol.482(2), pp.2166-2188 [Peer Reviewed Journal]
Accession number :
edsair.doi.dedup.....75539fb64c5a286557d3ff94651aaef1