Subaru High-z Exploration of Low-Luminosity Quasars (SHELLQs) XII. Extended [C II] Structure (Merger or Outflow) in a z = 6.72 Red Quasar
Takuma Izumi, Masafusa Onoue, Yoshiki Matsuoka, Michael A. Strauss,, Seiji Fujimoto, Hideki Umehata, Masatoshi Imanishi, Taiki Kawamuro, Tohru, Nagao, Yoshiki Toba, Kotaro Kohno, Nobunari Kashikawa, Kohei Inayoshi,, Toshihiro Kawaguchi, Kazushi Iwasawa, Akio K. Inoue

TL;DR
This study uses ALMA observations to analyze the extended [C II] emission in a high-redshift red quasar, revealing complex structures likely due to mergers or AGN-driven outflows, providing insights into early galaxy evolution.
Contribution
First detailed ALMA [C II] and FIR study of a z=6.72 red quasar, exploring its extended structure and feedback mechanisms.
Findings
[C II] emission extends over 5 kpc, larger than FIR continuum.
Complex, broad line profiles suggest dynamic processes.
Estimated outflow rate of ~100 M_sun/yr indicates moderate AGN feedback.
Abstract
We present ALMA [C II] 158 m line and far-infrared (FIR) continuum emission observations toward HSC J120505.09000027.9 (J12050000) at with the beam size of (or 4.1 kpc 2.6 kpc), the most distant red quasar known to date. Red quasars are modestly reddened by dust, and are thought to be in rapid transition from an obscured starburst to an unobscured normal quasar, driven by powerful active galactic nucleus (AGN) feedback which blows out a cocoon of interstellar medium (ISM). The FIR continuum of J12050000 is bright, with an estimated luminosity of . The [C II] line emission is extended on scales of kpc, greater than the FIR continuum. The line profiles at the extended regions are complex and broad (FWHM km s). Although it is not practical to identify the…
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