The Starburst-AGN connection: quenching the fire and feeding the beast
arXiv:1507.05983 · doi:10.1051/0004-6361/201526187
Abstract
The merger of two spiral galaxies is believed to be one of the main channels for the production of elliptical and early-type galaxies. In the process, the system becomes an (ultra) luminous infrared galaxy, or (U)LIRG, that morphs to a quasar, to a K+A galaxy, and finally to an early-type galaxy. The time scales for this metamorphosis are only loosely constrained by observations. In particular, the K+A phase should follow immediately after the QSO phase during which the dust and gas remaining from the (U)LIRG phase are expelled by the AGN. An intermediate class of QSOs with K+A spectral signatures, the post-starburst QSOs or PSQ, may represent the transitional phase between QSOs and K+As. We have compiled a sample of 72 {bona fide} PSQ from the SDSS DR7 QSO catalogue. We find the intermediate age populations in this sample to be on average significantly weaker and metal poorer than their putative descendants, the K+A galaxies. The typical spectral energy distribution of PSQ is well fitted by three components: starlight; an obscured power-law; and a hot dust component required to reproduce the mid-IR fluxes. From the slope and bolometric luminosity of the power-law component we estimate typical masses and accretion rates of the AGN, but we find little evidence of powerful radio-loud or strong X-ray emitters in our sample. This may indicate that the power-law component originates in a nuclear starburst rather than in an AGN, as expected if the bulk of their young stars are still being formed, or that the AGN is still heavily enshrouded in dust and gas. We find that both alternatives are problematic and that more and better optical, X-ray, and mm-wave observations are needed to elucidate the evolutionary history of PSQ.
A&A accepted
References in corpus (12)
- A Cosmological Framework for the Co-Evolution of Quasars, Supermassive Black Holes, and Elliptical Galaxies: I. Galaxy Mergers & Quasar Activity
- A Cosmological Framework for the Co-Evolution of Quasars, Supermassive Black Holes, and Elliptical Galaxies: II. Formation of Red Ellipticals
- The bulk of the black hole growth since z~1 occurs in a secular universe: No major merger-AGN connection
- Evidence for Quasar Activity Triggered by Galaxy Mergers in HST Observations of Dust-reddened Quasars
- Morphologies of z~0.7 AGN Host Galaxies in CANDELS: No trend of merger incidence with AGN luminosity
- Post-starburst--AGN Connection: Spatially Resolved Spectroscopy of Hdelta-Strong AGNs
- Star Formation and AGN Activity in Interacting Galaxies: A Near-UV Perspective
- Galaxy and Mass Assembly (GAMA): merging galaxies and their properties
- Spatially Resolving the Kinematics of the <100 μas Quasar Broad Line Region using Spectroastrometry
- A Panchromatic Survey of Post-starburst Mergers: searching for feedback
- 2D stellar population and gas kinematics of the inner kiloparsec of the post-starburst quasar SDSS J0330-0532
- AGB populations in post-starburst galaxies
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- A large sample of Kohonen selected E+A (post-starburst) galaxies from the Sloan Digital Sky Survey
- Post-Starburst Properties of Post-Merger Galaxies
- The environment of AGN dwarf galaxies at z0.7 from the VIPERS survey
- GA-NIFS and EIGER: A merging quasar host at z=7 with an overmassive black hole
- The optical vs. mid-infrared spectral properties of 82 Type 1 AGNs: coevolution of AGN and starburst
- A Catalog of Post-starburst Quasars from Sloan Digital Sky Survey Data Release 7