Providing stringent star formation rate limits of z2 QSO host galaxies at high angular resolution
arXiv:1410.4229 · doi:10.3847/0004-637X/821/1/64
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 formation and extended narrow-line emission. Assuming that the majority of narrow-line H is from star formation, we infer a star formation rate for SDSS J1029+6510 of 78.4 Myr originating from a compact region that is kinematically offset by 290 - 350 km/s. For SDSS J0925+06 we infer a star formation rate of 29 Myr distributed over three clumps that are spatially offset by 7 kpc. The null detections on three of the QSOs are used to infer surface brightness limits and we find that at 1.4 kpc distance from the QSO that the un-reddened star formation limit is 0.3 Myrkpc. If we assume a typical extinction values for z=2 type-1 QSOs, the dereddened star formation rate for our null detections would be 0.6 Myrkpc. These IFS observations indicate that if star formation is present in the host it would have to occur diffusely with significant extinction and not in compact, clumpy regions.
17 pages, 7 figures, 7 tables, Accepted to ApJ
References in corpus (14)
- A Semi-Analytic Model for the Co-evolution of Galaxies, Black Holes, and Active Galactic Nuclei
- The MAPPINGS III Library of Fast Radiative Shock Models
- H-alpha Observations of a Large Sample of Galaxies at z~2: Implications for Star Formation in High Redshift Galaxies
- How Mergers May Affect The Mass Scaling Relations Between Black Holes, Galaxies, and Other Gravitationally Bound Systems
- Emission-line Diagnostics of Low Metallicity AGN
- A method to remove residual OH emission from near infrared spectra
- Evidence for Merger Remnants in Early-Type Host Galaxies of Low-Redshift QSOs
- Type II Quasars from the Sloan Digital Sky Survey: V. Imaging host galaxies with the Hubble Space Telescope
- Interaction of massive black hole binaries with their stellar environment: III. Scattering of bound stars
- Spitzer Observations of Young Red Quasars
- Optical/near-infrared selection of red QSOs: Evidence for steep extinction curves towards galactic centers?
- Massive Star-Forming Host Galaxies of Quasars on Sloan Digital Sky Survey Stripe 82
- Host galaxies of bright high redshift quasars: Luminosities and colours
- Quasar Host Galaxies in the FORS Deep Field
Cited by in corpus (10)
- GA-NIFS: Black hole and host galaxy properties of two z6.8 quasars from the NIRSpec IFU
- First results from the JWST Early Release Science Program Q3D: Turbulent times in the life of a extremely red quasar revealed by NIRSpec IFU
- Galactic Scale Feedback Observed in the 3C 298 Quasar Host Galaxy
- Powerful winds in high-redshift obscured and red quasars
- A Spatially-Resolved Survey of Distant Quasar Host Galaxies: I. Dynamics of galactic outflows
- Characterizing and Improving the Data Reduction Pipeline for the Keck OSIRIS Integral Field Spectrograph
- Cold Mode Gas Accretion on Two Galaxy Groups at z2
- A Spatially-Resolved Survey of Distant Quasar Host Galaxies: II. Photoionization and Kinematics of the ISM
- Circumgalactic Environments around Distant Quasars 3C 9 and 4C 05.84
- HARMONI view of the host galaxies of active galactic nuclei around cosmic noon: Resolved stellar morpho-kinematics and the M- relation