Ionised gas kinematics and dynamical masses of z ≳ 6 galaxies from JADES/NIRSpec high-resolution spectroscopy

Author:

de Graaff AnnaORCID,Rix Hans-Walter,Carniani StefanoORCID,Suess Katherine A.,Charlot StéphaneORCID,Curtis-Lake Emma,Arribas Santiago,Baker William M.,Boyett Kristan,Bunker Andrew J.,Cameron Alex J.,Chevallard Jacopo,Curti Mirko,Eisenstein Daniel J.,Franx Marijn,Hainline Kevin,Hausen RyanORCID,Ji Zhiyuan,Johnson Benjamin D.,Jones Gareth C.,Maiolino Roberto,Maseda Michael V.,Nelson Erica,Parlanti EleonoraORCID,Rawle Tim,Robertson Brant,Tacchella Sandro,Übler Hannah,Williams Christina C.,Willmer Christopher N. A.,Willott Chris

Abstract

We explore the kinematic gas properties of six 5.5 < z < 7.4 galaxies in the JWST Advanced Deep Extragalactic Survey (JADES), using high-resolution JWST/NIRSpec multi-object spectroscopy of the rest-frame optical emission lines [OIII] and Hα. The objects are small and of low stellar mass (∼1 kpc; M* ∼ 107 − 9M), less massive than any galaxy studied kinematically at z > 1 thus far. The cold gas masses implied by the observed star formation rates are about ten times higher than the stellar masses. We find that their ionised gas is spatially resolved by JWST, with evidence for broadened lines and spatial velocity gradients. Using a simple thin-disc model, we fit these data with a novel forward-modelling software that accounts for the complex geometry, point spread function, and pixellation of the NIRSpec instrument. We find the sample to include both rotation- and dispersion-dominated structures, as we detect velocity gradients of v(re)∼100 − 150 km s−1, and we find velocity dispersions of σ0 ∼ 30 − 70 km s−1 that are comparable to those at cosmic noon. The dynamical masses implied by these models (Mdyn ∼ 109 − 10M) are higher than the stellar masses by up to a factor 40, and they are higher than the total baryonic mass (gas + stars) by a factor of ∼3. Qualitatively, this result is robust even if the observed velocity gradients reflect ongoing mergers rather than rotating discs. Unless the observed emission line kinematics is dominated by outflows, this implies that the centres of these galaxies are dominated by dark matter or that star formation is three times less efficient, leading to higher inferred gas masses.

Publisher

EDP Sciences

Cited by 24 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Early galaxies and early dark energy: a unified solution to the hubble tension and puzzles of massive bright galaxies revealed by JWST;Monthly Notices of the Royal Astronomical Society;2024-09-06

2. JADES: Carbon enrichment 350 Myr after the Big Bang;Astronomy & Astrophysics;2024-09

3. The NIRSpec Wide GTO Survey;Astronomy & Astrophysics;2024-09

4. From gas to stars: MUSEings on the internal evolution of IC 1613;Astronomy & Astrophysics;2024-09

5. The Three-phase Evolution of the Milky Way;The Astrophysical Journal;2024-08-28

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