Comprehensive Monitoring of Gamma-ray Bright Blazars. I. Statistical Study of Optical, X-ray, and Gamma-ray Spectral Slopes
Karen E. Williamson, Svetlana G. Jorstad, Alan P. Marscher, Valeri M., Larionov, Paul S. Smith, Iv\'an Agudo, Arkady A. Arkharov, Dmitry A. Blinov,, Carolina Casadio, Natalia V. Efimova, Jos\'e L. G\'omez, Vladimir A., Hagen-Thorn, Manasvita Joshi, Tatiana S. Konstantinova

TL;DR
This study analyzes multi-wavelength spectral data of 33 gamma-ray bright blazars over four years, revealing differences in spectral slopes between blazar classes and activity states, and exploring their emission mechanisms.
Contribution
It provides a comprehensive statistical analysis of spectral slopes across gamma-ray, X-ray, and optical bands during different activity states, highlighting class-specific spectral behaviors.
Findings
FSRQs have steeper gamma-ray spectra than BL Lacs during quiescence.
FSRQs' gamma-ray spectra flatten during active states, unlike BL Lacs.
BL Lacs show broad X-ray spectral slope distribution during active states.
Abstract
We present -ray, X-ray, ultraviolet, optical, and near-infrared light curves of 33 -ray bright blazars over four years that we have been monitoring since 2008 August with multiple optical, ground-based telescopes and the Swift satellite, and augmented by data from the Fermi Gamma-ray Space Telescope and other publicly available data from Swift. The sample consists of 21 flat-spectrum radio quasars (FSRQs) and 12 BL Lac objects (BL Lacs). We identify quiescent and active states of the sources based on their -ray behavior. We derive -ray, X-ray, and optical spectral indices, , , and , respectively (), and construct spectral energy distributions (SEDs) during quiescent and active states. We analyze the relationships between different spectral indices, blazar classes, and activity states. We find (i)…
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