Investigating the cause of the - relation
arXiv:1807.09793 · doi:10.1093/mnras/sty2019
Abstract
The correlation between radio spectral index and redshift has long been used to identify high redshift radio galaxies, but its cause is unknown. Traditional explanations invoke either intrinsic relations between spectral index and power, environmental differences at high redshift, or higher inverse Compton losses due to the increased photon energy density of the cosmic microwave background. In this paper we investigate whether the increased inverse Compton losses alone can cause the observed spectral index - redshift correlation by using spectral modelling of nearby radio galaxies to simulate high redshift equivalents. We then apply selection effects and directly compare the simulated radio galaxy sample with an observed sample with sufficient redshift coverage. We find excellent agreement between the two, implying that inverse Compton losses and selection effects alone can largely reproduce the observed spectral index - redshift correlation.
7 pages, 4 figures. Accepted for publication in MNRAS
References in corpus (8)
- Distant Radio Galaxies and their Environments
- A simulation-based analytic model of radio galaxies
- A search for distant radio galaxies from SUMSS and NVSS: III. radio spectral energy distributions and the z-alpha correlation
- RAiSE III: 3C radio AGN energetics and composition
- Remnant radio-loud AGN in the Herschel-ATLAS field
- New 145-MHz Source Measurements by PAPER in the Southern Sky
- Spectral ageing in the era of big data: integrated vs resolved models
- Radio Polarization Properties of Quasars and Active Galaxies at High Redshifts
Cited by in corpus (20)
- Search and analysis of giant radio galaxies with associated nuclei (SAGAN) -- I : New sample and multi-wavelength studies
- The 700 ks Chandra Spiderweb Field II: Evidence for inverse-Compton and thermal diffuse emission in the Spiderweb galaxy
- High-redshift quasars at -- I. Radio spectra
- The nature of faint radio galaxies at high redshifts
- The best of both worlds: Combining LOFAR and Apertif to derive resolved radio spectral index images
- Radio Spectra of Luminous, Heavily Obscured WISE-NVSS Selected Quasars
- An updated estimate of the cosmic radio background and implications for ultra-high-energy photon propagation
- PRAiSE: Resolved spectral evolution in simulated radio sources
- Wide and Deep Exploration of Radio Galaxies with Subaru HSC (WERGS). III. Discovery of a z = 4.72 Radio Galaxy with Lyman Break Technique
- High-resolution international LOFAR observations of 4C~43.15 -- Spectral ages and injection indices in a high-z radio galaxy
- A VLA-GMRT Look at 11 Powerful FR II Quasars
- VLBI Imaging of high-redshift galaxies and protoclusters at low radio frequencies with the International LOFAR Telescope
- Subarcsecond view on the high-redshift blazar GB 1508+5714 by the International LOFAR Telescope
- Apertif 1.4 GHz continuum observations of the Boötes field and their combined view with LOFAR
- Young but fading radio sources: searching for remnants among compact steep-spectrum radio sources
- The GLEAMing of the first supermassive black holes: II. A new sample of high-redshift radio galaxy candidates
- MIGHTEE: exploring the relationship between spectral index, redshift and radio luminosity
- UNIONS Optical Identifications for VLASS Radio Sources in the Euclid Sky (UNVEIL) I. A Catalog of ~146,000 Radio Galaxies up to z~5
- Radio properties of high-redshift galaxies at
- Spectral indices in active galactic nuclei as seen by Apertif and LOFAR