Optical and Radio Variability of BL Lacertae
Haritma Gaur, Alok C. Gupta, R. Bachev, A. Strigachev, E. Semkov, Paul, J. Wiita, A. E. Volvach, Minfeng Gu, A. Agarwal, I. Agudo, M. F. Aller, H. D., Aller, O. M. Kurtanidze, S. O. Kurtanidze, A. Lahteenmaki, S. Peneva, M. G., Nikolashvili, L. A. Sigua, M. Tornikoski

TL;DR
This study analyzed optical and radio observations of BL Lacertae during an active phase from 2010 to 2013, revealing significant correlations with a ~250-day delay and insights into the source's variability mechanisms.
Contribution
It provides the first detailed multi-frequency correlation analysis of BL Lacertae during an active phase, highlighting the time lag and variability characteristics across optical and radio bands.
Findings
Significant optical-radio correlation with ~250-day delay.
Radio variability amplitude depends on frequency.
Optical variations are consistent with a geometric jet model.
Abstract
We observed the prototype blazar, BL Lacertae, extensively in optical and radio bands during an active phase in the period 2010--2013 when the source showed several prominent outbursts. We searched for possible correlations and time lags between the optical and radio band flux variations using multifrequency data to learn about the mechanisms producing variability. During an active phase of BL Lacertae, we searched for possible correlations and time lags between multifrequency light curves of several optical and radio bands. We tried to estimate any possible variability timescales and inter-band lags in these bands. We performed optical observations in B, V, R and I bands from seven telescopes in Bulgaria, Georgia, Greece and India and obtained radio data at 36.8, 22.2, 14.5, 8 and 4.8 GHz frequencies from three telescopes in Ukraine, Finland and USA. Significant cross-correlations…
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