JWST's PEARLS: A z=6 quasar in a train-wreck galaxy merger system
Madeline A. Marshall, Rogier A. Windhorst, Giovanni Ferrami, S.P. Willner, Maria Polletta, William C. Keel, Giovanni G. Fazio, Seth H. Cohen, Timothy Carleton, Rolf A. Jansen, Rachel Honor, Rafael Ortiz III, Jake Summers, Jordan C.J. D'Silva, Anton M. Koekemoer, Dan Coe

TL;DR
This paper presents JWST observations of a z=6 quasar in a complex galaxy merger system, revealing extreme outflows, active star formation, and multiple merging companions, illustrating early universe galaxy evolution.
Contribution
First detailed JWST spectroscopic study of a z=6 quasar within a multi-galaxy merger, uncovering extreme outflows and interactions in the early universe.
Findings
Detected a quasar-driven outflow with velocity ~6050 km/s.
Identified two merging companion galaxies with distinct ages and star formation rates.
Observed a gas bridge indicating ongoing interaction between the quasar host and a companion.
Abstract
We present JWST NIRSpec integral field spectroscopy observations of the z=5.89 quasar NDWFS J1425+3254 from 0.6-5.3 microns, covering the rest-frame ultraviolet and optical at a spectral resolution of R~100. The quasar has a black hole mass of and an Eddington ratio of , as implied from the broad Balmer H and H lines. The quasar host has significant ongoing obscured star formation, as well as a quasar-driven outflow with velocity km/s and ionised outflow rate of yr. This is possibly one of the most extreme outflows in the early Universe. The data also reveal that two companion galaxies are merging with the quasar host. The north-eastern companion galaxy is relatively old and very massive, with…
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