Simultaneous Multi-band Optical Follow-up Observations of a Gamma-Ray Flare in BL Lacertae
X. Chang, D. R. Xiong, Chenxu Liu, J. R. Xu, G. Bhatta, T. F. Yi, J. Zhang, Y. Pan, X. Z. Zou, X. L. Chen, Y. P. Yang, J. H. Zhang, X. K. Liu, Y. Fang, G. W. Du, T. Wang, X. F. Zhu, Y. L. Gong, Z. X. Wang, and X. W. Liu

TL;DR
This study presents multi-band optical follow-up observations of a gamma-ray flare in BL Lacertae, revealing intraday variability, spectral trends, a potential quasi-periodic oscillation, and insights into the emission region and black hole characteristics.
Contribution
First simultaneous multi-band optical observations of a gamma-ray flare in BL Lacertae, detecting variability, spectral behavior, and a candidate QPO, providing new constraints on emission regions and black hole properties.
Findings
Detected intraday variability in multiple optical bands.
Identified a potential quasi-periodic oscillation of ~101 minutes.
Constrained the black hole mass and emission region size.
Abstract
On October , BL Lacertae () experienced one of its brightest gamma-ray flares. We conducted simultaneous follow-up observations in the , , , , , and bands from October to November using the Mephisto telescope and its two cm twin auxiliary photometric telescopes of Yunnan University. Intraday variability (IDV) was detected in the , , , and bands. The IDV duty cycle increased with observing frequency across these bands. The shortest variability time-scale, derived from auto-correlation analysis, constrains the upper limit of the black hole mass to be assuming a Kerr black hole, and assuming a Schwarzschild black hole. The emission region responsible for the observed variability has a size of cm and is…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Astrophysical Phenomena and Observations · Gamma-ray bursts and supernovae
