A unified model for orphan and multi-wavelength blazar flares
Ze-Rui Wang, Ruo-Yu Liu, Maria Petropoulou, Foteini Oikonomou, Rui, Xue, Xiang-Yu Wang

TL;DR
This paper introduces a unified model explaining both orphan and multi-wavelength blazar flares by considering the location of energy dissipation along the jet, successfully describing observed spectral energy distributions.
Contribution
The paper proposes a novel unified framework for understanding various blazar flares based on dissipation site location, integrating previously separate models.
Findings
Model explains spectral energy distributions of flares from 3C 279 and PKS 2155-304.
Predicts orphan and multi-wavelength flares based on dissipation distance.
Successfully unifies different flare phenomena within a single theoretical framework.
Abstract
Blazars are a class of active galactic nuclei which host relativistic jets oriented close to the observer's line of sight. Blazars have very complex variability properties. Flares, namely flux variations around the mean value with a well-defined shape and duration, are one of the identifying properties of the blazar phenomenon. Blazars are known to exhibit multi-wavelength flares, but also "orphan" flares, namely flux changes that appear only in a specific energy range. Various models, sometimes at odds with each other, have been proposed to explain specific flares even for a single source, and cannot be synthesized into a coherent picture. In this paper, we propose a unified model for explaining orphan and multi-wavelength flares from blazars in a common framework. We assume that the blazar emission during a flare consists of two components: (i) a quasi-stable component that arises…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Neutrino Physics Research · Radio Astronomy Observations and Technology
