The Paschen Jump as a Diagnostic of the Diffuse Nebular Continuum Emission in Active Galactic Nuclei
arXiv:2111.03090 · doi:10.3847/1538-4357/ac4bc6
Abstract
Photoionization modeling of active galactic nuclei (AGN) predicts that diffuse continuum (DC) emission from the broad-line region makes a substantial contribution to the total continuum emission from ultraviolet through near-infrared wavelengths. Evidence for this DC component is present in the strong Balmer jump feature in AGN spectra, and possibly from reverberation measurements that find longer lags than expected from disk emission alone. However, the Balmer jump region contains numerous blended emission features, making it difficult to isolate the DC emission strength. In contrast, the Paschen jump region near 8200 Å is relatively uncontaminated by other strong emission features. Here, we examine whether the Paschen jump can aid in constraining the DC contribution, using Hubble Space Telescope STIS spectra of six nearby Seyfert 1 nuclei. The spectra appear smooth across the Paschen edge, and we find no evidence of a Paschen spectral break or jump in total flux. We fit multi-component spectral models over the range Å and find that the spectra can still be compatible with a significant DC contribution if the DC Paschen jump is offset by an opposite spectral break resulting from blended high-order Paschen emission lines. The fits imply DC contributions ranging from 10% to 50% at 8000 Å, but the fitting results are highly dependent on assumptions made about other model components. These degeneracies can potentially be alleviated by carrying out fits over a broader wavelength range, provided that models can accurately represent the disk continuum shape, Fe II emission, high-order Balmer line emission, and other components.
17 pages, 6 figures, and 3 tables; ApJ in press
References in corpus (18)
- The AGN Black Hole Mass Database
- Space Telescope and Optical Reverberation Mapping Project. II. Swift and HST Reverberation Mapping of the Accretion Disk of NGC 5548
- Testing thermal reprocessing in AGN accretion discs
- Reverberation mapping of Active Galactic Nuclei: from X-ray corona to dusty torus
- Sizes and Temperature Profiles of Quasar Accretion Disks from Chromatic Microlensing
- Swift monitoring of NGC 5548: X-ray reprocessing and short term UV/optical variability
- The Spatial Structure of An Accretion Disk
- The characteristic blue spectra of accretion disks in quasars as uncovered in the infrared
- Intensive disc-reverberation mapping of Fairall 9: 1st year of Swift & LCO monitoring
- Supermassive black holes with high accretion rates in active galactic nuclei. XI. Accretion disk reverberation mapping of Mrk 142
- Modeling the UV/optical continuum time-lags in AGN
- On the multi-wavelength variability of Mrk 110: Two components acting at different timescales
- Balmer and Paschen jump temperature determinations in low-metallicity emission-line galaxies
- Continuum reverberation mapping and a new lag-luminosity relationship for AGN
- Frequency-resolved lags in UV/optical continuum reverberation mapping
- Modeling Quasar UV/Optical Variability with the Corona-heated Accretion-disk Reprocessing (CHAR) Model
- Transient obscuration event captured in NGC 3227. I. Continuum model for the broadband spectral energy distribution
- Space Telescope and Optical Reverberation Mapping Project. XI. Disk-wind characteristics and contributions to the very broad emission lines of NGC 5548
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- Optical Continuum Reverberation Mapping of a Candidate IMBH in a Nearby Seyfert 1 Galaxy
- HALO I: Photometric continuum reverberation mapping of Fairall 9