Providing stringent star formation rate limits of z$\sim$2 QSO host galaxies at high angular resolution
Andrey Vayner, Shelley A. Wright, Tuan Do, James E. Larkin, Lee Armus,, Sarah C. Gallagher

TL;DR
This study uses high-resolution integral field spectroscopy with adaptive optics to set strict upper limits on star formation rates in z~2 QSO host galaxies, revealing mostly diffuse or obscured star formation activity.
Contribution
It introduces a novel technique combining AO and IFS for resolving and analyzing star formation in QSO hosts at high redshift, providing stringent limits on their star formation activity.
Findings
Detected star formation in two QSOs with rates of 78.4 and 29 M_sun/yr.
Null detections imply star formation rates below 0.3 M_sun/yr/kpc^2 at 1.4 kpc from QSOs.
Star formation, if present, is likely diffuse or heavily obscured.
Abstract
We present integral field spectrograph (IFS) with laser guide star adaptive optics (LGS-AO) observations of z=2 quasi-stellar objects (QSOs) designed to resolve extended nebular line emission from the host galaxy. Our data was obtained with W. M. Keck and Gemini-North Observatories using OSIRIS and NIFS coupled with the LGS-AO systems. We have conducted a pilot survey of five QSOs, three observed with NIFS+AO and two observed with OSIRIS+AO at an average redshift of z=2.15. We demonstrate that the combination of AO and IFS provides the necessary spatial and spectral resolutions required to separate QSO emission from its host. We present our technique for generating a PSF from the broad-line region of the QSO and performing PSF subtraction of the QSO emission to detect the host galaxy. We detect H and [NII] for two sources, SDSS J1029+6510 and SDSS J0925+06 that have both star…
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