Insights from the first flaring activity of a high-synchrotron-peaked blazar with X-ray polarization and VHE gamma rays
MAGIC Collaboration, K. Abe, S. Abe, J. Abhir, A. Abhishek, V. A. Acciari, A. Aguasca-Cabot, I. Agudo, T. Aniello, S. Ansoldi, L. A. Antonelli, A. Arbet Engels, C. Arcaro, K. Asano, A. Babi\'c, U. Barres de Almeida, J. A. Barrio, L. Barrios-Jim\'enez, I. Batkovi\'c, J. Baxter

TL;DR
This study presents multi-wavelength observations of a blazar flare, including the first simultaneous X-ray polarization measurement, revealing complex variability and insights into the jet's turbulent plasma environment.
Contribution
It provides the first simultaneous X-ray polarization data during a gamma-ray flare of a blazar and models the emission with a stratified jet, highlighting turbulence and extreme particle energies.
Findings
X-ray polarization degree reaches up to 26%
Weak correlation between flux and model parameters
Evidence of a highly turbulent, electron-ion plasma environment
Abstract
We study a flaring activity of the HSP Mrk421 that was characterized from radio to very-high-energy (VHE; E TeV) gamma rays with MAGIC, Fermi-LAT, Swift, XMM-Newton and several optical and radio telescopes. These observations included, for the first time for a gamma-ray flare of a blazar, simultaneous X-ray polarization measurements with IXPE. We find substantial variability in both X-rays and VHE gamma rays throughout the campaign, with the highest VHE flux above 0.2 TeV occurring during the IXPE observing window, and exceeding twice the flux of the Crab Nebula. However, the VHE and X-ray spectra are on average softer, and the correlation between these two bands weaker that those reported in previous flares of Mrk421. IXPE reveals an X-ray polarization degree significantly higher than that at radio and optical frequencies. The X-ray polarization angle varies by 100…
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