The Eddington Limit in Cosmic Rays: An Explanation for the Observed Lack of Low-Mass Radio-Loud Quasars and the M_{BH}-M_{Bulge} Relation
arXiv:0902.1181 · doi:10.1088/0004-637X/710/2/891
Abstract
We present a feedback mechanism for supermassive black holes and their host bulges that operates during epochs of radio-loud quasar activity. In the radio cores of relativistic quasar jets, internal shocks convert a fraction of ordered bulk kinetic energy into randomized relativistic ions, or in other words cosmic rays. By employing a phenomenologically-motivated jet model, we show that enough 1-100 GeV cosmic rays escape the radio core into the host galaxy to break the Eddington limit in cosmic rays. As a result, hydrostatic balance is lost and a cosmic ray momentum-driven wind develops, expelling gas from the host galaxy and thus self-limiting the black hole and bulge growth. Although the interstellar cosmic ray power is much smaller than the quasar photon luminosity, cosmic rays provide a stronger feedback than UV photons, since they exchange momentum with the galactic gas much more efficiently. The amount of energy released into the host galaxy as cosmic rays, per unit of black hole rest mass energy, is independent of black hole mass. It follows that radio-loud jets should be more prevalent in relatively massive systems since they sit in galaxies with relatively deep gravitational potentials. Therefore, jet-powered cosmic ray feedback not only self-regulates the black hole and bulge growth, but also provides an explanation for the lack of radio-loud activity in relatively small galaxies. By employing basic known facts regarding the physical conditions in radio cores, we approximately reproduce both the slope and the normalization of the M_{BH}-M_{Bulge} relation.
12 pages, 1 figure, 1 table, accepted for publication in ApJ; revised text to address referee's comments
References in corpus (4)
- The power of blazar jets
- Extreme gas kinematics in the z=2.2 powerful radio galaxy MRC1138-262: Evidence for efficient AGN feedback in the early Universe?
- The Eddington Limit in Cosmic Rays: An Explanation for the Observed Faintness of Starbursting Galaxies
- AGN-Induced Cavities in NGC 1399 and NGC 4649
Cited by in corpus (10)
- Particle Acceleration in Relativistic Magnetized Collisionless Electron-Ion Shocks
- Momentum Driving: which physical processes dominate AGN feedback?
- Global cosmic-ray related luminosity and energy budget of the Milky Way
- Feedback in Luminous Obscured Quasars
- The Growth of Massive Black Holes in Galaxy Merger Simulations with Feedback by Radiation Pressure
- The physical scale of the far-infrared emission in the most luminous submillimetre galaxies II: evidence for merger-driven star formation
- Synchrotron Emission from Elliptical Galaxies Consequent to AGN outbursts
- The extended narrow-line region of two type-I quasi-stellar objects
- Photon Feedback: Screening and the Eddington Limit
- AGN cool feedback and analogy with X-ray binaries: from radiation pressure to cosmic ray driven outflows