Radio-loud AGNs at high redshifts and the cosmic microwave background
arXiv:1311.7147 · doi:10.1093/mnras/stt2394
Abstract
We discuss how the interaction between the electrons in a relativistic jet and the Cosmic Microwave Background (CMB) affects the observable properties of radio-loud AGN at early epochs. At high z the magnetic energy density in the radio lobes of powerful radio-loud quasars can be exceeded by the energy density of the CMB (because of its (1+z)^4 dependance). In this case, relativistic electrons cool preferentially by scattering off CMB photons, rather than by synchrotron. Thus, sources sharing the same intrinsic properties have different extended radio and X-ray luminosities when located at different z: more distant sources are less luminous in radio and more luminous in X-rays than their closer counterparts. Instead, in compact regions where the local magnetic field still exceeds the CMB in terms of energy density, synchrotron radiation would be unaffected by the presence of the CMB. Such regions include the compact inner jet and the so-called hot spots in the radio lobes. The decrease in radio luminosity is larger in misaligned sources, whose radio flux is dominated by the extended isotropic component. These sources can fail detection in current flux limited radio surveys, and therefore they are possibly under-represented in the associated samples. As the cooling time is longer for lower energy electrons, the radio luminosity deficit due to the CMB photons is less important at low radio frequencies. Therefore objects not detected so far in current surveys at a few GHz could be picked up by low frequency deep surveys, such as LOFAR and SKA. Until then, we can estimate the number of high redshift radio-loud AGNs through the census of their aligned proxies, i.e., blazars. Indeed, their observed radio emission arises in the inner and strongly magnetized compact core of the relativistic jet, and not affected by inverse Compton scattering off CMB photons.
7 pages, 5 figures. Accepted for publication in MNRAS
References in corpus (3)
Cited by in corpus (43)
- Modeling the Radio Background from the First Black Holes at Cosmic Dawn: Implications for the 21 cm Absorption Amplitude
- The case for super-critical accretion onto massive black holes at high redshift
- Signature of Excess Radio Background in the 21-cm Global Signal and Power Spectrum
- Growing massive black holes through super-critical accretion of stellar-mass seeds
- High-redshift radio galaxies: a potential new source of 21-cm fluctuations
- Simulating the dynamics and non-thermal emission of relativistic magnetised jets I. Dynamics
- Behavior of axion-like particles in smoothed out domain-like magnetic fields
- The Radio Scream from Black Holes at Cosmic Dawn: A Semi-Analytic Model for the Impact of Radio Loud Black-Holes on the 21 cm Global Signal
- Parsec-scale properties of the radio brightest jetted AGN at z > 6
- Simulating the dynamics and synchrotron emission from relativistic jets II. Evolution of non-thermal electrons
- Astrophysical radio background cannot explain the EDGES 21-cm signal: constraints from cooling of non-thermal electrons
- The first Super Massive Black Holes: indications from models for future observations
- Serendipitous discovery of an extended X-ray jet without a radio counterpart in a high-redshift quasar
- Do high redshift quasars have powerful jets?
- XMM-Newton observations of the extremely X-ray luminous quasar CFHQS J142952+544717=SRGE J142952.1+544716 at redshift z=6.18
- The evolution of the heaviest super-massive black-holes in jetted AGNs
- Dark bubbles around high-redshift radio-loud AGN
- Imprints of quasar duty cycle on the 21cm signal from the Epoch of Reionization
- CMB-induced radio quenching of high-redshift jetted AGNs with highly magnetic hotspots
- Giant radio quasars: sample and basic properties
- Stellar Tidal Disruption Events by Direct Collapse Black Holes
- Radio Jet Proper-motion Analysis of Nine Distant Quasars above Redshift 3.5
- VLBI observations of VIK J2318-3113, a quasar at z = 6.44
- Extragalactic sources in Cosmic Microwave Background maps
- Big and young supermassive black holes in the early Universe
- High-resolution international LOFAR observations of 4C~43.15 -- Spectral ages and injection indices in a high-z radio galaxy
- A compact symmetric radio source born at one-tenth the current age of the Universe
- Radio Power from a Direct-Collapse Black Hole in CR7
- RAiSE X: searching for radio galaxies in X-ray surveys
- Radio Emission from the First Quasars at 6-15
- MALS SALT-NOT survey of MIR-selected powerful radio-bright AGN at 0<z<3.5
- Proof of CMB-driven X-ray brightening of high-z radio galaxies
- Multi-wavelength properties of three new radio-powerful quasi-stellar objects discovered from RACS
- Black holes at cosmic dawn in the redshifted 21cm signal of HI
- Peering Into the Extended X-ray Emission on Megaparsec Scale in 3C 187
- Monster radio jet (>66 kpc) observed in quasar at z5
- Subarcsecond view on the high-redshift blazar GB 1508+5714 by the International LOFAR Telescope
- A small radio galaxy at z=4.026
- Extended X-ray emission from the z=4.26 radio galaxy 4C 63.20
- Cospatial 21 cm and metal-line absorbers in the epoch of reionization -- I : Incidence and observability
- Powerful yet lonely: Is 3C 297 a high-redshift fossil group?
- Radio properties of high-redshift galaxies at
- HST WFC3/Grism Observations of the Candidate Ultra-High-Redshift Radio Galaxy GLEAM J0917-0012