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An X-Ray View of the Jet-Cycle in the Radio Loud AGN 3C120

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arxiv 1305.4937 v1 pith:UJNSUYDH submitted 2013-05-21 astro-ph.HE astro-ph.CO

classification astro-ph.HEastro-ph.CO
keywords diskmodelradiosuzakubandpointingsc120context
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We present a study of the central engine in the broad-line radio galaxy 3C120 using a multi-epoch analysis of a deep XMM-Newton observation and two deep Suzaku pointings (in 2012). In order to place our spectral data into the context of the disk-disruption/jet-ejection cycles displayed by this object, we monitor the source in the UV/X-ray bands, and in the radio band. We find three statistically acceptable spectral models, a disk-reflection model, a jet-model and a jet+disk model. Despite being good descriptions of the data, the disk-reflection model violates the radio constraints on the inclination, and the jet-model has a fine-tuning problem, requiring a jet contribution exceeding that expected. Thus, we argue for a composite jet+disk model. Within the context of this model, we verify the basic predictions of the jet-cycle paradigm, finding a truncated/refilling disk during the Suzaku observations and a complete disk extending down to the innermost stable circular orbit (ISCO) during the XMM-Newton observation. The idea of a refilling disk is further supported by the detection of the ejection of a new jet knot approximately one month after the Suzaku pointings. We also discover a step-like event in one of the Suzaku pointings in which the soft band lags the hard band. We suggest that we are witnessing the propagation of a disturbance from the disk into the jet on a timescale set by the magnetic field.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Radio flares and X-ray hardening embedded in the long soft state of 4U 1543-475

    astro-ph.HE 2026-08 conditional novelty 6.0 of 10

    Radio flares in 4U 1543-475 coincided with X-ray hardening, enhanced coronal emission, and lower reflection fraction, suggesting transient inner-disk changes accompany jet launching.

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