On the radio dichotomy of active galactic nuclei
Xinwu Cao

TL;DR
This paper proposes a model explaining the radio dichotomy in active galactic nuclei (AGNs) by linking the presence of relativistic jets to the angular velocity of circumnuclear gas, with magnetic field enhancement near the black hole driving jet formation.
Contribution
It introduces a new model connecting the AGN radio dichotomy to the angular velocity of circumnuclear gas and magnetic field dynamics, explaining why only some AGNs produce jets.
Findings
Radio-loud AGNs are hosted by core galaxies.
RL quasars have faster black hole growth than RQ quasars of similar luminosity.
Massive black holes are systematically heavier in RL quasars.
Abstract
It is still a mystery why only a small fraction of active galactic nuclei (AGNs) contain relativistic jets. Strong magnetic field is a necessary ingredient for jet formation, however, the advection of the external field in a geometrically thin disk is inefficient. The gas with a small angular velocity may fall from the Bondi radius nearly freely to the circularization radius , and a thin accretion disk is formed within . We suggest that the external magnetic field is substantially enhanced in this region, and the magnetic field at can be sufficiently strong to drive outflows from the disk if the angular velocity of the gas is low at . The magnetic field is efficiently dragged in the disk, because most angular momentum of the disk is removed by the outflows that leads to a significantly high radial velocity. The strong magnetic…
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