Powering of cool filaments in cluster cores by buoyant bubbles - I. Qualitative model

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Abstract

Cool-core clusters (e.g. Perseus or M87) often possess a network of bright gaseous filaments, observed in radio, infrared, optical and X-ray bands. We propose that these filaments are powered by the reconnection of the magnetic field in the wakes of buoyant bubbles. Active galactic nucleus (AGN)-inflated bubbles of relativistic plasma rise buoyantly in the cluster atmosphere, stretching and amplifying the field in the wake to values of β = 8πPgas/B2 ~ 1. The field lines in thewake have opposite directions and are forced together as the bubble motion stretches the filament. This setup bears strong similarity to the coronal loops on the Sun or to the Earth's magnetotail. The reconnection process naturally explains both the required level of local dissipation rate in filaments and the overall luminosity of filaments. The original source of power for the filaments is the potential energy of buoyant bubbles, inflated by the central AGN. © 2013 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society.

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Churazov, E., Ruszkowski, M., & Schekochihin, A. (2013). Powering of cool filaments in cluster cores by buoyant bubbles - I. Qualitative model. Monthly Notices of the Royal Astronomical Society, 436(1), 526–530. https://doi.org/10.1093/mnras/stt1594

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