Evolution of field spiral galaxies up to redshifts z=1
arXiv:astro-ph/0601505 · doi:10.1086/521205
Abstract
We have gained VLT/FORS spectra and HST/ACS images of a sample of 220 distant field spiral galaxies. Spatially resolved rotation curves were extracted and fitted with synthetic velocity fields that take into account all geometric and observational effects, like blurring due to the slit width and seeing influence. The maximum rotation velocity Vmax could be determined for 124 galaxies that cover the redshift range 0.1<z<1.0. The luminosity-rotation velocity distribution of this sample is offset from the Tully-Fisher relation (TFR) of local low-mass spirals, whereas the distant high-mass spirals are compatible with the local TFR. We show that the slope of the local and the intermediate-z TFR would be in compliance if its scatter decreased by more than a factor of 3 between z~0.5 and z~0. On the other hand, the distant low-luminosity disks have much lower stellar M/L ratios than their local counterparts, while high-luminosity disks barely evolved in M/L over the covered redshift range. This could be the manifestation of the "downsizing" effect, i.e. the succesive shift of the peak of star formation from high-mass to low-mass galaxies towards lower redshifts. This trend might be canceled out in the TF diagram due to the simultaneous evolution of multiple parameters. We also estimate the ratios between stellar and total masses, finding that these remained constant since z=1, as would be expected in the context of hierarchically growing structure. (Abridged)
20 pages, 5 figures, ApJ, accepted
References in corpus (13)
- The Stellar Mass Tully-Fisher Relation to z=1.2 from AEGIS
- Mass-to-Light Ratios of Field Early-Type Galaxies at z~1 from Ultra-Deep Spectroscopy: Evidence for Mass-dependent Evolution
- Down-Sizing in Galaxy Formation at z~1 in the Subaru/XMM-Newton Deep Survey (SXDS)
- The evolution of the luminosity functions in the FORS Deep Field from low to high redshift: I. The blue bands
- Evolution of the Near-Infrared Tully-Fisher Relation: Constraints on the Relationship Between the Stellar and Total Masses of Disk Galaxies since z=1
- A Survey of Galaxy Kinematics to z ~ 1 in the TKRS/GOODS-N Field. II. Evolution in the Tully-Fisher Relation
- The B-Band Luminosity Function of Red and Blue Galaxies up to z=3.5
- The Tully-Fisher relation of distant field galaxies
- The Tully-Fisher relation and its evolution with redshift in cosmological simulations of disc galaxy formation
- The Tully-Fisher relation of intermediate redshift field and cluster galaxies from Subaru spectroscopy
- Kinematic and chemical evolution of early-type galaxies
- The star formation history of intermediate redshift late-type galaxies
- The Tully-Fisher relation of galaxies at z~0.85 in the DEEP2 survey
Cited by in corpus (20)
- Bimodal gas accretion in the Horizon-MareNostrum galaxy formation simulation
- The VLT LEGA-C Spectroscopic Survey: The Physics of Galaxies at a Lookback Time of 7 Gyr
- IMAGES-III: The evolution of the Near-Infrared Tully-Fisher relation over the last 6 Gyr
- Clustering properties of galaxies selected in stellar mass: Breaking down the link between luminous and dark matter in massive galaxies from z=0 to z=2
- The effects of ram-pressure stripping on the internal kinematics of simulated spiral galaxies
- The hierarchical build-up of the Tully-Fisher relation
- The Evolution of Field Early-Type Galaxies in the FDF and WHDF
- Tully-Fisher analysis of the multiple cluster system Abell 901/902
- Evolution of the optical Tully-Fisher relation up to z=1.3
- Internal kinematics of spiral galaxies in distant clusters III. Velocity fields from FORS2/MXU spectroscopy
- Disk galaxy scaling relations at intermediate redshifts - I. The Tully-Fisher and velocity-size relations
- Galaxy kinematics in the XMMU J2235-2557 cluster field at z~1.4
- The space density distribution of galaxies in the absolute magnitude - rotation velocity plane: a volume-complete Tully-Fisher relation from CALIFA stellar kinematics
- Submillimetre observations of X-ray active galactic nuclei in the William Herschel Deep Field
- Sub-millimetre source identifications and the micro-Jansky source population at 8.4 GHz in the William Herschel Deep Field
- The nature of sub-millimetre galaxies I: A comparison of AGN and star-forming galaxy SED fits
- Age-dating the Tully-Fisher relation at moderate redshift
- Quantitative measure of evolution of bright cluster galaxies at moderate redshifts
- The Evolution of the Baryonic Tully-Fisher Relation over the past 6 Gyr
- Kinematic Evolution of Field and Cluster Spiral Galaxies