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The origin of X-ray emission in 3CRR sources: hints from mid-infrared Spitzer observations

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arxiv 2107.13142 v2 pith:CHWSFV7X submitted 2021-07-28 astro-ph.GA

classification astro-ph.GA
keywords x-raylambdaemissionrlagnstherealphaindexmid-infrared
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abstract

Whether X-ray emission in radio-loud (RL) active galactic nuclei (AGNs) originates from disk coronae or jets is still under debate. For example, the positive relationships in radio-quiet (RQ) AGNs (such as the optical to X-ray spectral index $\alpha_{\rm {OX}}$ and Eddington ration $\lambda_{\rm {O}}$ as well as the X-ray photon index $\Gamma$ and $\lambda_{\rm {O}}$) are not detected in RLAGNs. We intend to further investigate this issue in this work. A sample of 27 luminous sources (including 16 quasars and 11 high-excitation radio galaxies) was selected from the 3CRR catalog to reinvestigate the origin of X-ray emission in RLAGNs, where the X-ray and mid-infrared fluxes are observed by Chandra/XMM-Newton and Spitzer, respectively. It is found for the first time that there is a significant relationship between the mid-infrared to X-ray spectral index $\alpha_{\rm {IX}}$ and $\lambda_{\rm {IR}}$ for whole sample, while there is no relationship between $\alpha_{\rm {OX}}$ and $\lambda_{\rm {O}}$ in quasars. There are strong positive relationships between both $L_{\rm {R}}$-$L_{\rm {X}}$ and $L_{\rm {UV}}$-$L_{\rm {X}}$ panels, which can be well fitted by the disk-corona model. However, there is no significant relationship between $\Gamma$ and $\lambda_{\rm {IR}}$. The possible reason is related to the effects of the large-scale magnetic field in RLAGNs. We suggest that the X-ray emission in high-excitation RLAGNs originates from a disk-corona system.

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  1. The physical mechanism for two rapid changing-look AGNs: SDSS J0225+0030 and SDSS J1723+5504

    astro-ph.GA 2026-08 conditional novelty 5.0 of 10

    A revised ADAF-collapse model, with the transition radius estimated from optical flux changes, yields cooling timescales comparable to the observed sub-year turn-on timescales of two changing-look AGNs.

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