A multi-wavelength polarimetric study of the blazar CTA 102 during a Gamma-ray flare in 2012
Carolina Casadio, Jos\'e L. G\'omez, Svetlana G. Jorstad, Alan P., Marscher, Valeri M. Larionov, Paul S. Smith, Mark A. Gurwell, Anne, L\"ahteenm\"aki, Iv\'an Agudo, Sol N. Molina, Vishal Bala, Manasvita Joshi,, Brian Taylor, Karen E. Williamson, Arkady A. Arkharov

TL;DR
This study combines multi-wavelength polarimetric observations and high-resolution VLBA imaging to analyze the 2012 gamma-ray flare of blazar CTA 102, revealing jet dynamics, magnetic field behavior, and likely gamma-ray production mechanisms.
Contribution
It provides a detailed multi-wavelength, polarimetric, and VLBA imaging analysis of CTA 102 during a gamma-ray flare, highlighting jet orientation changes and magnetic field structure.
Findings
Gamma-ray outburst coincides with multi-frequency flares.
Jet orientation became more aligned with our line of sight during the flare.
Optical EVPA rotation suggests a helical magnetic field influence.
Abstract
We perform a multi-wavelength polarimetric study of the quasar CTA 102 during an extraordinarily bright -ray outburst detected by the {\it Fermi} Large Area Telescope in September-October 2012 when the source reached a flux of F photons cm s. At the same time the source displayed an unprecedented optical and NIR outburst. We study the evolution of the parsec scale jet with ultra-high angular resolution through a sequence of 80 total and polarized intensity Very Long Baseline Array images at 43 GHz, covering the observing period from June 2007 to June 2014. We find that the -ray outburst is coincident with flares at all the other frequencies and is related to the passage of a new superluminal knot through the radio core. The powerful -ray emission is associated with a change in direction of the jet, which…
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