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H$\alpha$ Time Delays of AGNs from the Zwicky Transcient Facility Broadband Photometry

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arxiv 2403.10223 v1 pith:LSZ3PWAK submitted 2024-03-15 astro-ph.GA

classification astro-ph.GA
keywords timeagnsalphalagsbroadbandlineemissioniccf-cut
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abstract

In our previous work on broadband photometric reverberation mapping (PRM), we proposed the ICCF-Cut process to obtain the time lags of H$\alpha$ emission line from two broadband lightcurves via subtracting the continuum emission from the line band. Extending the work, we enlarge our sample to the Zwicky Transient Facility (ZTF) database. We adopt two criteria to select 123 type 1 AGNs with sufficient variability and smooth lightcurves from 3537 AGNs at $z<0.09$ with more than 100 epoch observations in the $g$ and $r$ bands from the ZTF database. We calculate the H$\alpha$ time lags for 23 of them which have previous spectroscopic reverberation mapping (SRM) results using ICCF-Cut, JAVELIN and $\chi ^2$ methods. Our obtained H$\alpha$ time lags are slightly larger than the H$\beta$ time lags, which is consistent with the previous SRM results and the theoretical model of the AGN broad line region. The comparisons between SRM and PRM lag distributions and between the subtracted emission line lightcurves indicate that after selecting AGNs with the two criteria, combining the ICCF-Cut, JAVELIN and $\chi^2$ methods provides an efficient way to get the reliable H$\alpha$ lags from the broadband PRM. Such techniques can be used to estimate the black hole masses of a large sample of AGNs in the large multi-epoch photometric sky surveys such as the Legacy Survey of Space and Time (LSST) and the survey from the Wide Field Survey Telescope (WFST) in the near future.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Exploring Quasar Variability With ZTF at 0<z<3: A Universal Relation with Eddington Ratio

    astro-ph.GA 2025-05 conditional novelty 4.0 of 10

    Using ZTF light curves of 915 quasars, the authors find a universal anti-correlation between variability amplitude and Eddington ratio, expressed as log λEdd = -0.71 log Fvar - 1.52.

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