Rapid optical variability of TeV blazars
Gopal-Krishna, Arti Goyal, S. Joshi, Chrisphin Karthick, R. Sagar,, Paul J. Wiita, G. C. Anupama, D. K. Sahu

TL;DR
This study systematically characterizes the intranight optical variability of TeV blazars, revealing a high duty cycle, differences between subclasses, and identifying a rare short-term dip possibly caused by jet absorption.
Contribution
First comprehensive analysis of intranight optical variability in TeV blazars, including a new estimate of the duty cycle and subclass comparison.
Findings
INOV duty cycle of 59% for TeV blazars
LBLs show higher INOV duty cycle (~63%) than HBLs (~38%)
Detected a rare 4% dip in one HBL's light curve, possibly due to jet absorption
Abstract
In this first systematic attempt to characterise the intranight optical variability (INOV) of TeV detected blazars, we have monitored a well defined set of 9 TeV blazars on total 26 nights during 2004-2010. In this R (or V)-band monitoring programme only one blazar was monitored per night for a minimum duration of 4 hours. Using the CCD, an INOV detection threshold of ~ 1-2 % was achieved in the densely sampled DLCs. We have further expanded the sample by including another 13 TeV blazars from literature. This enlarged sample of 22 TeV blazars, monitored on a total of 116 nights (including 55 nights newly reported here), has enabled us to arrive at the first estimate of the INOV duty cycle of TeV detected blazars. Applying the C-test, the INOV DC is found to be 59 %, which decreases to 47 % if only INOV fractional amplitudes above 3 % are considered. These observations also permit, for…
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