Star Formation and Gas Kinematics of Quasar Host Galaxies at z~6: New insights from ALMA
Ran Wang, Jeff Wagg, Chris L. Carilli, Fabian Walter, Lindley Lentati,, Xiaohui Fan, Dominik A. Riechers, Frank Bertoldi, Desika Narayanan, Michael, A. Strauss, Pierre Cox, Alain Omont, Karl M. Menten, Kirsten K. Knudsen,, Roberto Neri, Linhua Jiang

TL;DR
This study uses ALMA to observe five z~6 quasar host galaxies, revealing vigorous star formation, gas dynamics consistent with rotation, and high SMBH-to-bulge mass ratios, providing new insights into early galaxy evolution.
Contribution
First ALMA observations of [C II] and dust in five z~6 quasar hosts, revealing star formation and gas kinematics at high redshift.
Findings
Detected [C II] and dust in all five quasars.
Gas dynamics suggest rotating, gravitationally bound gas.
High SMBH-to-bulge mass ratios compared to local galaxies.
Abstract
We present ALMA observations of the [C II] 158 micron fine structure line and dust continuum emission from the host galaxies of five redshift 6 quasars. We also report complementary observations of 250 GHz dust continuum and CO (6-5) line emission from the z=6.00 quasar SDSS J231038.88+185519.7. The ALMA observations were carried out in the extended array at 0.7" resolution. We have detected the line and dust continuum in all five objects. The derived [C II] line luminosities are 1.6x10^{9} to 8.8x10^{9} Lsun and the [C II]-to-FIR luminosity ratios are 3.0-5.6x10^{-4}, which is comparable to the values found in other high-redshift quasar-starburst systems and local ultra-luminous infrared galaxies. The sources are marginally resolved and the intrinsic source sizes (major axis FWHM) are constrained to be 0.3" to 0.6" (i.e., 1.7 to 3.5 kpc) for the [C II] line emission and 0.2" to 0.4"…
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