ALMA Observations of the Sub-kpc Structure of the Host Galaxy of a z= 6.5 Lensed Quasar: A Rotationally-Supported Hyper-Starburst System at the Epoch of Reionization
Minghao Yue, Jinyi Yang, Xiaohui Fan, Feige Wang, Justin Spilker,, Iskren Y. Georgiev, Charles R. Keeton, Katrina C. Litke, Daniel P. Marrone,, Fabian Walter, Ran Wang, Xue-Bing Wu, Bram P. Venemans, Ann Zabludoff

TL;DR
This study uses ALMA to observe a gravitationally lensed quasar host galaxy at z=6.5, revealing a compact, rotating, hyper-starburst system with extreme star formation rates and a possible high gas-mass fraction during the epoch of reionization.
Contribution
First detailed ALMA imaging of a z=6.5 quasar host showing a rotationally-supported hyper-starburst galaxy with high SFR and complex dynamics.
Findings
Host galaxy is a compact, ultra-luminous infrared galaxy with SFR of 1560 M_sun/yr.
Velocity field suggests rotation but not a simple thin disk.
High SFR surface density near the maximum observed in the universe.
Abstract
We report ALMA observations of the dust continuum and {\cii} emission of the host galaxy of J0439+1634, a gravitationally lensed quasar at . Gravitational lensing boosts the source-plane resolution to . The lensing model derived from the ALMA data is consistent with the fiducial model in \citet{fan19} based on {\it HST} imaging. The host galaxy of J0439+1634 can be well-fitted by a S\'ersic profile consistent with an exponential disk, both in the far-infrared (FIR) continuum and the {\cii} emission. The overall magnification is for the continuum and for the {\cii} line. The host galaxy of J0439+1634 is a compact ultra-luminous infrared galaxy, with a total star formation rate (SFR) of after correcting for lensing and an effective radius of kpc. The resolved regions in…
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