Evolution and feedback of AGN jets of different cosmic ray composition

Author:

Lin Yen-Hsing12ORCID,Yang H-Y Karen23,Owen Ellis R245ORCID

Affiliation:

1. Interdisciplinary Program of Science (IPS), National Tsing Hua University , No. 101, Section 2, Kuang-Fu Road, Hsinchu, 30013, Taiwan

2. Institute of Astronomy, National Tsing Hua University , Hsinchu 30013, Taiwan

3. Physics Division, National Center for Theoretical Sciences , Taipei 106017, Taiwan

4. Theoretical Astrophysics, Department of Earth and Space Science, Graduate School of Science, Osaka University , Toyonaka, Osaka 560-0043, Japan

5. Center for Informatics and Computation in Astronomy, National Tsing Hua University , Hsinchu 30013, Taiwan

Abstract

ABSTRACT Jet feedback from active galactic nuclei (AGN) is one of the most promising mechanisms for suppressing cooling flows in cool-core clusters. However, the composition of AGN jets and bubbles remains uncertain; they could be thermally dominated, or dominated by cosmic ray proton (CRp), cosmic ray electron (CRe), or magnetic energy. In this work, we investigate the evolution and feedback effects of CRp and CRe dominated jets by conducting 3D magnetohydrodynamic simulations of AGN jet-inflated bubbles in the intracluster medium using the FLASH code. We present the evolution of their energies, dynamics, and heating, and model their expected cavity-power versus radio-luminosity relation (Pcav–LR). We find that bubbles inflated by CRe dominated jets follow a very similar dynamical evolution to CRp dominated bubbles even though CRe within bubbles suffer significantly stronger synchrotron and inverse-Compton cooling. This is because, as CRe lose their energy, the jet-inflated bubbles quickly become thermally dominated within ∼30 Myr. Their total energy stops decreasing with CR energy and evolves similarly to CRp dominated bubbles. The ability of CRe and CRp dominated bubbles to heat the intracluster medium is also comparable; the cold gas formed via local thermal instabilities is well suppressed in both cases. The CRp and CRe bubbles follow different evolutionary trajectories on the Pcav–LR plane, but the values are broadly consistent with observed ranges for FR-I sources. We also discuss observational techniques that have potential for constraining the composition of AGN jets and bubbles.

Funder

Ministry of Education

Japan Society for the Promotion of Science

National Tsing Hua University

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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