The nature of giant clumps in distant galaxies probed by the anatomy of the Cosmic Snake
arXiv:1711.03977 · doi:10.1038/s41550-017-0295-x
Abstract
Giant stellar clumps are ubiquitous in high-redshift galaxies. They are thought to play an important role in the build-up of galactic bulges and as diagnostics of star formation feedback in galactic discs. Hubble Space Telescope (HST) blank field imaging surveys have estimated that these clumps have masses up to 10 M and linear sizes larger than ~1 kpc. Recently, gravitational lensing has also been used to get higher spatial resolution. However, both recent lensed observations and models suggest that the clumps properties may be overestimated by the limited resolution of standard imaging techniques. A definitive proof of this observational bias is nevertheless still missing. Here we investigate directly the effect of resolution on clump properties by analysing multiple gravitationally-lensed images of the same galaxy at different spatial resolutions, down to 30 pc. We show that the typical mass and size of giant clumps, generally observed at 1 kpc resolution in high-redshift galaxies, are systematically overestimated. The high spatial resolution data, only enabled by strong gravitational lensing using currently available facilities, support smaller scales of clump formation by fragmentation of the galactic gas disk via gravitational instabilities.
Nature Astronomy, published online on 13th of November 2017 (see https://www.nature.com/natastron/). Authors' version including Letter+Methods+Supplementary Info: 12 pages, 3 figures (main); 20 pages (Methods); 18 pages, 10 figures, 5 tables (Supplementary Info)
References in corpus (12)
- Formation of Massive Galaxies at High Redshift: Cold Streams, Clumpy Disks and Compact Spheroids
- A Bayesian approach to strong lensing modelling of galaxy clusters
- The stellar mass assembly of galaxies from z=0 to z=4. Analysis of a sample selected in the rest-frame near-infrared with Spitzer
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- The Low Mass End of the Fundamental Relation for Gravitationally Lensed Star Forming Galaxies at 1<z<6
- DYNAMO-HST Survey: Clumps in Nearby Massive Turbulent Disks and the Effects of Clump Clustering on Kiloparsec Scale Measurements of Clumps
- A spectacular giant arc in the massive cluster lens MACSJ1206.2-0847
- Physical Properties of Sub-galactic Clumps at 0.5 1.5 in the UVUDF
- Physical properties of galaxies and their evolution in the VIMOS VLT Deep Survey. II. Extending the mass-metallicity relation to the range z=0.89-1.24
- Star Formation at z=2.481 in the Lensed Galaxy SDSS J1110+6459, I: Lens Modeling and Source Reconstruction
- Clumpy high-z galaxies as a testbed for feedback-regulated galaxy formation
- Star Formation at z=2.481 in the Lensed Galaxy SDSS J1110+6459, II: What is missed at the normal resolution of the Hubble Space Telescope?
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