Long-term optical and ray variability of the blazar PKS~1222+216
arXiv:2209.13574 · doi:10.3847/1538-4357/ac9627
Abstract
The ray emission from flat-spectrum radio quasars (FSRQs) is thought to be dominated by the inverse Compton scattering of the external sources of photon fields, e.g., accretion disk, broad-line region (BLR), and torus. FSRQs show strong optical emission lines and hence can be a useful probe of the variability in BLR output, which is the reprocessed disk emission. We study the connection between the optical continuum, H line, and ray emissions from the FSRQ PKS~1222+216, using long-term (2011-2018) optical spectroscopic data from Steward Observatory and ray observations from -LAT. We measured the continuum () and H () fluxes by performing a systematic analysis of the 6029-6452 Å optical spectra. We observed stronger variability in than , an inverse correlation between H equivalent width and , and a redder-when-brighter trend. Using discrete cross-correlation analysis, we found a positive correlation (DCF0.5) between and (6024-6092 Å) light curves with time-lag consistent with zero at 2 level. We found no correlation between and light curves, probably dismissing the disk contribution to the optical and -ray variability. The observed strong variability in the -LAT flux and correlation could be due to the changes in the particle acceleration at various epochs. We derived the optical-to--ray spectral energy distributions (SEDs) during the -ray flaring and quiescent epochs that show a dominant disk component with no variability. Our study suggests that the -ray emission zone is likely located at the edge of the BLR or in the radiation field of the torus.
15 pages, 8 figures; Accepted for publication in ApJ
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