Empirical Determinations of Key Physical Parameters Related to Classical Double Radio Sources
arXiv:astro-ph/9807250 · doi:10.1086/317218
Abstract
Multi-frequency radio observations of the radio bridge of powerful classical double radio sources can be used to determine: the beam power of the jets emanating from the AGN; the total time the source will actively produce jets that power large-scale radio emission; the thermal pressure of the medium in the vicinity of the radio source; and the total mass, including dark matter, of the galaxy or cluster of galaxies traced by the ambient gas that surrounds the radio source. The theoretical constructs that allow a determination of each of these quantities using radio observations are presented and discussed. Empirical determinations of each of these quantities are obtained and analyzed. A sample of 14 radio galaxies and 8 radio loud quasars with redshifts between zero and two for which there is enough radio information to be able to determine the physical parameters listed above was studied in detail. (abridged)
Submitted to ApJ, LaTex, 26 total pages of text which includes captions & two tables, plus 13 EPS figures & 1 table
References in corpus (4)
- The Temperature Structure of 30 Nearby Clusters Observed with ASCA. Similarity of Temperature Profiles
- Global Cosmological Parameters Determined Using Classical Double Radio Galaxies
- Updated Estimates of Global Cosmological Parameters Determined Using Classical Double Radio Galaxies
- The Sunyaev-Zel'dovich Infrared Experiment: A Millimeter-wave Receiver for Cluster Cosmology
Cited by in corpus (20)
- Two populations of progenitors for type Ia SNe?
- Evidence for powerful AGN winds at high redshift: Dynamics of galactic outflows in radio galaxies during the "Quasar Era"
- Extreme gas kinematics in the z=2.2 powerful radio galaxy MRC1138-262: Evidence for efficient AGN feedback in the early Universe?
- Magnetic Energy of the Intergalactic Medium from Galactic Black Holes
- Luminosity function, sizes and FR dichotomy of radio-loud AGN
- Physical Properties of Very Powerful FRII Radio Galaxies
- Estimates of Black Hole Spin Properties of 55 Sources
- Mutual distance dependence drives the observed jet power - radio luminosity scaling relations in radio galaxies
- Rapid Coeval Black Hole and Host Galaxy Growth in MRC 1138-262: The Hungry Spider
- Updated Estimates of Global Cosmological Parameters Determined Using Classical Double Radio Galaxies
- Global Cosmological Parameters Determined Using Classical Double Radio Galaxies
- Radio Galaxy Redshift-Angular Size Data Constraints on Dark Energy
- The Relationship Between Beam Power and Radio Power for Classical Double Radio Sources
- Quintessence, Cosmology, and Fanaroff-Riley Type IIB Radio Galaxies
- Black Hole Spins of Radio Sources
- Constraints on the Cluster Environments and Hot Spot Magnetic Field Strengths of the Radio Sources 3C254 and 3C280
- Bounds on Black Hole Spins
- Multi-frequency characterisation of remnant radio galaxies in the Lockman Hole field
- Robust Supermassive Black Hole Spin Mass-Energy Characteristics: A New Method and Results
- Comparison of Radio Observations and Numerical Simulations of the Radio Lobes of Cygnus A