English

Multiband Optical Variability of the Blazar 3C 454.3 on Diverse Timescales

High Energy Astrophysical Phenomena 2024-12-17 v1

Abstract

Due to its peculiar and highly variable nature, the blazar 3C 454.3 has been extensively monitored by the WEBT team. Here, we present for the first time these long-term optical flux and color variability results using data acquired in B, V, R, and I bands over a time span of \sim 2 decades. We include data from WEBT collaborators and public archives such as SMARTS, Steward Observatory, and ZTF. The data are binned and segmented to study the source over this long term when more regular sampling was available. During our study, the long-term spectral variability reveals a redder when brighter (RWB) trend, which, however, stabilizes at a particular brightness cutoff \sim 14.5 mag in the I-band, after which it saturates and evolves into a complex state. This trend indicates increasing jet emission dominance over accretion disk emission until jet emission completely dominates. Plots of the spectral index variation (following FνναF_{\nu} \propto \nu^{-\alpha}) reveal a bimodal distribution using a one-day binning. These correlate with two extreme phases of 3C 454.3, an outburst or high flux state and quiescent or low flux state, which are respectively jet and accretion disk dominated. We have also conducted intra-day variability studies of nine light curves and found that six of them are variable. Discrete Correlation Function (DCF) analysis between different optical waveband pairs peak at zero lags, indicating co-spatial emission in different optical bands.

Keywords

Cite

@article{arxiv.2412.10766,
  title  = {Multiband Optical Variability of the Blazar 3C 454.3 on Diverse Timescales},
  author = {Karan Dogra and Alok C. Gupta and C. M. Raiteri and M. Villata and Paul J. Wiita and S. O. Kurtanidze and S. G. Jorstad and R. Bachev and G. Damljanovic and C. Lorey and S. S. Savchenko and O. Vince and M. Abdelkareem and F. J. Aceituno and J. A. Acosta-Pulido and I. Agudo and G. Andreuzzi and S. A. Ata and G. V. Baida and L. Barbieri and D. A. Blinov and G. Bonnoli and G. A. Borman and M. I. Carnerero and D. Carosati and V. Casanova and W. P. Chen and Lang Cui and E. G. Elhosseiny and D. Elsaesser and J. Escudero and M. Feige and K. Gazeas and L. E. Gennadievna and T. S. Grishina and Minfeng Gu and V. A. Hagen-Thorn and F. Hemrich and H. Y. Hsiao and M. Ismail and R. Z. Ivanidze and M. D. Jovanovic and T. M. Kamel and G. N. Kimeridze and E. N. Kopatskaya and D. Kuberek and O. M. Kurtanidze and A. Kurtenkov and V. M. Larionov and L. V. Larionova and M. Liao and H. C. Lin and K. Mannheim and A. Marchini and C. Marinelli and A. P. Marscher and D. Morcuende and D. A. Morozova and S. V. Nazarov and M. G. Nikolashvili and D. Reinhart and J. O. Santos and A. Scherbantin and E. Semkov and E. V. Shishkina and L. A. Sigua and A. K. Singh and A. Sota and R. Steineke and M. Stojanovic and A. Strigachev and A. Takey and Amira A. Tawfeek and I. S. Troitskiy and Y. V. Troitskaya and An-Li Tsai and A. A. Vasilyev and K. Vrontaki and Zhongli Zhang and A. V. Zhovtan and N. Zottmann and Wenwen Zuo},
  journal= {arXiv preprint arXiv:2412.10766},
  year   = {2024}
}

Comments

18 pages, 6 figures, 5 tables