The Ionization and Destruction of Polycyclic Aromatic Hydrocarbons in Powerful Quasars
arXiv:2110.09705 · doi:10.3847/1538-4357/ac32e2
Abstract
We reanalyze the mid-infrared (5-40 m) Spitzer spectra of 86 low-redshift () Palomar-Green quasars to investigate the nature of polycyclic aromatic hydrocarbon (PAH) emission and its utility as a star formation rate (SFR) indicator for the host galaxies of luminous active galactic nuclei (AGNs). We decompose the spectra with our recently developed template-fitting technique to measure PAH fluxes and upper limits, which we interpret using mock spectra that simulate the effects of AGN dilution. While luminous quasars can severely dilute and affect the detectability of emission lines, PAHs are intrinsically weak in some sources that are otherwise gas-rich and vigorously forming stars, conclusively demonstrating that powerful AGNs destroy PAH molecules. Comparing PAH-based SFRs with independent SFRs derived from the mid-infrared fine-structure neon lines and the total infrared luminosity reveals that PAHs can trace star formation activity in quasars with bolometric luminosities , but increasingly underestimate the SFR for more powerful quasars, typically by dex. Relative to star-forming galaxies and low-luminosity AGNs, quasars have a comparable PAH 11.3 m/7.7 m ratio but characteristically lower ratios of 6.2 m/7.7 m, 8.6 m/7.7 m, and 11.3 m/17.0 m. We suggest that these trends indicate that powerful AGNs preferentially destroy small grains and enhance the PAH ionization fraction.
20 pages, 11 figures and 1 Table. Accepted for publication in ApJ
References in corpus (30)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Some Aspects of Measurement Error in Linear Regression of Astronomical Data
- Dust Masses, PAH Abundances, and Starlight Intensities in the SINGS Galaxy Sample
- AGN Dusty Tori: I. Handling of Clumpy Media
- Mid-IR Galaxy Classification Based on Silicate Obscuration and PAH Equivalent Width
- Mid-Infrared Spectral Diagnosis of Submillimeter Galaxies
- Variations of the Mid-IR Aromatic Features Inside and Among Galaxies
- High resolution mid-infrared spectroscopy of ultraluminous infrared galaxies
- The distribution of silicate strength in Spitzer spectra of AGNs and ULIRGs
- 9.7 um Silicate Features in AGNs: New Insights into Unification Models
- The Mid-infrared Fine-structure Lines of Neon as an Indicator of Star For mation Rate in Galaxies
- Nuclear 11.3m PAH emission in local active galactic nuclei
- The Effect of Active Galactic Nuclei on the Mid-Infrared Aromatic Features
- Mid-Infrared Properties of Luminous Infrared Galaxies II: Probing the Dust and Gas Physics of the GOALS Sample
- The mean star formation rates of unobscured QSOs: searching for evidence of suppressed or enhanced star formation
- AGN Feedback and Star Formation of Quasar Host Galaxies: Insights from the Molecular Gas
- PAH features within few hundred parsecs of active galactic nuclei
- High molecular gas content and star formation rates in local galaxies that host quasars, outflows and jets
- ALMA observations of cold molecular gas in AGN hosts at z~1.5 - Evidence of AGN feedback?
- Infrared spectra and photometry of complete samples of PG and 2MASS quasars
- On the LINER nuclear obscuration, Compton-thickness and the existence of the dusty torus; Clues from Spitzer/IRS spectra
- Integral field spectroscopy of nearby QSOs II. The molecular gas content and condition for star formation
- An ALMA CO(2-1) Survey of Nearby Palomar-Green Quasars
- Gas Content Regulates the Lifecycle of Star Formation and Black Hole Accretion in Galaxies
- The Infrared Emission and Vigorous Star Formation of Low-redshift Quasars
- Silicate Dust in Active Galactic Nuclei
- Testing the Evolutionary Link between Type 1 and Type 2 Quasars with Measurements of the Interstellar Medium
- Cold molecular gas and PAH emission in Seyfert galaxies
- The Diverse Morphology, Stellar Population, and Black Hole Scaling Relations of the Host Galaxies of Nearby Quasars
- A Method to Extract Spatially Resolved Polycyclic Aromatic Hydrocarbon Emission from Spitzer Spectra: Application to M51
Cited by in corpus (13)
- Little Red Dots: Rapidly Growing Black Holes Reddened by Extended Dusty Flows
- Linking Characteristics of the Polycyclic Aromatic Hydrocarbon Population with Galaxy Properties: A Quantitative Approach Using the NASA Ames PAH IR Spectroscopic Database
- Evidence that Shocks Destroy Small PAH Molecules in Low-luminosity Active Galactic Nuclei
- Enhanced Star Formation Efficiency in the Central Regions of Nearby Quasars Hosts
- JWST MIRI reveals the diversity of nuclear mid-infrared spectra of nearby type-2 quasars
- Absence of nuclear polycyclic aromatic hydrocarbon emission from a compact starburst: The case of the type-2 quasar Mrk 477
- Polycyclic Aromatic Hydrocarbon Emission in the Central Regions of Three Seyferts the Implication for Underlying Feedback Mechanisms
- The Contribution of Evolved Stars to PAH Heating and Implications for Estimating Star Formation Rates
- Dusty plasma in active galactic nuclei
- Lack of Correlations between Cold Molecular Gas and AGN Properties in Type 1 AGNs at
- Estimating Molecular Gas Content in Galaxies from PAH Emission
- Investigating the origin of radio emission in candidate super-Eddington accreting black holes
- ReveaLLAGN 1: JWST Emission-Line Spectra Reveal Low-Luminosity AGN with UV-Deficient SEDs and Warm Molecular Gas