Cosmological constraints from Type I radio-loud quasars
L. Huang, Z. Y. Tu, N. Chang, F. F. Song, F. He, X. Y. Fu

TL;DR
This study uses multi-band data from Type I radio-loud quasars to explore their luminosity correlations and employs them as cosmological distance indicators to test dark energy models.
Contribution
It introduces a large, multi-wavelength quasar sample and analyzes their luminosity correlations to improve cosmological distance measurements and dark energy constraints.
Findings
X-ray luminosity of RQQs is indirectly correlated with radio luminosity.
X-ray luminosity of RLQs is directly related to radio luminosity.
RLQs with ${ m \Gamma _{UV}} extless 1.6$ fit the data better.
Abstract
We obtain a new sample of 1192 Type I quasars with the UV-optical, radio and X-ray wavebands coverage by combining \citet{Huang2022} and other matching data of SDSS-DR16 with FIRST, XMM-Newton, and Chandra Source Catalog, and a sample of 407 flat-spectrum radio-loud quasars (FSRLQs) of blazars from the Roma-BZCAT, which can be used to investigate their multi-band luminosity correlations and measure the luminosity distances of these Type I radio-loud quasars (RLQs) samples. We check the correlation between X-ray, UV-optical, and radio luminosity for various groupings of radio-quiet quasars (RQQs) and RLQs by parameterizing X-ray luminosity as a sole function of UV-optical or radio luminosity and as a joint function of UV-optical radio luminosity, which also can be employed to determine these cosmological distances. By Bayesian information criterion (BIC), the data suggest that the X-ray…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Radio Astronomy Observations and Technology · Galaxies: Formation, Evolution, Phenomena
