Insights into the emission of the blazar 1ES 1011+496 through unprecedented broadband observations during 2011 and 2012
J. Aleksi\'c, S. Ansoldi, L. A. Antonelli, P. Antoranz, C. Arcaro, A., Babic, P. Bangale, U. Barres de Almeida, J. A. Barrio, J. Becerra Gonz\'alez,, W. Bednarek, E. Bernardini, B. Biasuzzi, A. Biland, O. Blanch, S. Bonnefoy,, G. Bonnoli, F. Borracci, T. Bretz, E. Carmona

TL;DR
This study provides a comprehensive broadband analysis of the blazar 1ES 1011+496 during 2011-2012, characterizing its emission mechanisms and variability, and testing the one-zone SSC model with unprecedented data coverage.
Contribution
The paper offers the first full characterization of the high-energy bump in the broadband SED of 1ES 1011+496 from 0.1 GeV to 1 TeV, supporting the applicability of the one-zone SSC model.
Findings
The VHE spectrum has a photon index of 3.69±0.22.
The source was in a quiescent state with moderate variability.
Radio observations revealed superluminal motion at 1.8c.
Abstract
1ES 1011+496 was discovered in very high energy (VHE, E >100 GeV) -rays with MAGIC in 2007. The absence of simultaneous data at lower energies led to a rather incomplete characterization of the broadband spectral energy distribution (SED). We study the source properties and the emission mechanisms, probing whether a simple one-zone synchrotron-self-Compton (SSC) scenario is able to explain the observed broadband spectrum. We analyzed VHE to radio data from 2011 and 2012 collected by MAGIC, -LAT, , KVA, OVRO, and Mets\"ahovi in addition to optical polarimetry data and radio maps from the Liverpool Telescope and MOJAVE. The VHE spectrum was fit with a simple power law with a photon index of and a flux above 150 GeV of ph cm s. 1ES 1011+496 was found to be in a generally quiescent state at all…
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