Magnetically arrested discs in FR I radio galaxies

Author:

He Han1ORCID,You Bei1ORCID,Jiang Ning23ORCID,Cao Xinwu4ORCID,Hu Jingfu5,Sheng Zhenfeng236,Yao Su7,Czerny Bozena8

Affiliation:

1. Department of Astronomy, School of Physics and Technology, Wuhan University , Wuhan 430072 , People’s Republic of China

2. Key Laboratory for Research in Galaxies and Cosmology, Department of Astronomy, University of Science and Technology of China, Chinese Academy of Sciences , Hefei, Anhui 230026 , China

3. School of Astronomy and Space Sciences, University of Science and Technology of China , Hefei, Anhui 230026 , China

4. Institute for Astronomy, School of Physics, Zhejiang University , 866 Yuhangtang Rd, Hangzhou 310058 , China

5. School of Physics and Electronic Information Engineering, Qinghai Normal University , Xining 810000 , China

6. Institute of Deep Space Sciences, Deep Space Exploration Laboratory , Hefei 230026 , China

7. National Astronomical Observatories, Chinese Academy of Sciences , 20A Datun Road, Beijing 100101 , China

8. Center for Theoretical Physics, Polish Academy of Sciences , Al. Lotnikow 32/46, PL-02-668 Warsaw , Poland

Abstract

ABSTRACT A sample of 17 Fanaroff–Riley type I (FR I) radio galaxies constructed from the 3CR catalogue, which is characterized by edge-darkened radio structures, is studied. The optical core luminosities derived from Hubble Space Telescope observation are used to estimate the Eddington ratios which are found to be below 10−3.4 for this sample. This is supported by the Baldwin–Phillips–Terlevich optical diagnostic diagrams derived with the spectroscopic observation of Telescopio Nazionale Galileo, suggesting that these sources are of low-ionization nuclear emission-line regions. It implies that the accretion in these FR I sources can be modelled as advection-dominated accretion flows (ADAFs). Given the low accretion rate, the predicted jet power with a fast-spinning black hole (BH) a = 0.95 in the Blandford–Znajek mechanics is lower than the estimated one for almost all the sources in our sample. Such powerful jets indicate the presence of magnetically arrested discs (MAD) in the inner region of the ADAF, in the sense that the magnetic fields in the inner accretion zone are strong. Moreover, we show that, even in the MAD scenario, the BH spins in the sample are most likely moderate and/or fast with a ≳ 0.5.

Funder

NSFC

Natural Science Foundation of Hubei Province

Fundamental Research Funds for the Central Universities

China Postdoctoral Science Foundation

Publisher

Oxford University Press (OUP)

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