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Anti-correlated Optical Flux and Polarization Variability in BL Lac

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arxiv 1312.0939 v1 pith:KL3HB5RO submitted 2013-12-03 astro-ph.HE astro-ph.GA

Anti-correlated Optical Flux and Polarization Variability in BL Lac

classification astro-ph.HE astro-ph.GA
keywords polarizationduringfluxbanddegreedirectionfractionalobservations
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We present the results of photometric (V band) and polarimetric observations of the blazar BL Lac during 2008--2010 using TRISPEC attached to the KANATA 1.5-m telescope in Japan. The data reveal a great deal of variability ranging from days to months with detection of strong variations in fractional polarization. The V band flux strongly anti-correlates with the degree of polarization during the first of two observing seasons but not during the second. The direction of the electric vector, however, remained roughly constant during all our observations. These results are consistent with a model with at least two emission regions being present, with the more variable component having a polarization direction nearly perpendicular to that of the relatively quiescent region so that a rising flux can produce a decline in degree of polarization. We also computed models involving helical jet structures and single transverse shocks in jets and show that they might also be able to agree with the anti-correlations between flux and fractional polarization.

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Cited by 1 Pith paper

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  1. Peculiar Behavior of Optical Polarization in Blazar 1ES 1959+650: Role of Jet Magnetic Field and Geometry

    astro-ph.HE 2026-07 conditional novelty 5.0

    In 1ES 1959+650, optical polarization correlates positively with brightness before a flare, anti-correlates after it, and decouples during the flare — attributed to changing jet viewing geometry.