Quasar standardization: Overcoming Selection Biases and Redshift Evolution
arXiv:2203.12914 · doi:10.3847/1538-4357/ac6593
Abstract
Quasars (QSOs) are extremely luminous active galatic nuclei currently observed up to redshift . As such, they have the potential to be the next rung of the cosmic distance ladder beyond SNe Ia, if they can reliably be used as cosmological probes. The main issue in adopting QSOs as standard candles (similarly to Gamma-Ray Bursts) is the large intrinsic scatter in the relations between their observed properties. This could be overcome by finding correlations among their observables that are intrinsic to the physics of QSOs and not artifacts of selection biases and/or redshift evolution. The reliability of these correlations should be verified through well-established statistical tests. The correlation between the ultraviolet (UV) and X-ray fluxes developed by Risaliti \& Lusso is one of the most promising relations. We apply a statistical method to correct this relation for redshift evolution and selection biases. \textbf{Remarkably, we recover the the same parameters of the slope and the normalization as Risaliti \& Lusso. Our results establish the reliability of this relation, which is intrinsic to the QSO properties and not merely an effect of selection biases or redshift evolution. Hence,} the possibility to standardize QSOs as cosmological candles, thereby extending the Hubble diagram up to .
11 pages, 5 figures, 1 Table. The paper is now accepted in ApJ
References in corpus (19)
- The X-ray-to-Optical Properties of Optically-Selected Active Galaxies Over Wide Luminosity and Redshift Ranges
- A Luminous Quasar at Redshift 7.642
- The X-ray Properties of the Most-Luminous Quasars from the Sloan Digital Sky Survey
- On the evolution of the Hubble constant with the SNe Ia Pantheon Sample and Baryon Acoustic Oscillations: a feasibility study for GRB-cosmology in 2030
- A time - luminosity correlation for Gamma Ray Bursts in the X - rays
- Very high redshift quasars and the rapid emergence of super-massive black holes
- The X-ray fundamental plane of the Platinum Sample, the Kilonovae and the SNe Ib/c associated with GRBs
- Determining the range of validity of quasar X-ray and UV flux measurements for constraining cosmological model parameters
- Standardizing Platinum Dainotti-correlated gamma-ray bursts, and using them with standardized Amati-correlated gamma-ray bursts to constrain cosmological model parameters
- Study of possible systematics in the L*X - Ta* correlation of Gamma Ray Bursts
- The Optical Luminosity-Time Correlation for More Than 100 Gamma-Ray Burst Afterglows
- Selection effects in Gamma Ray Bursts correlations: consequences on the ratio between GRB and star formation rates
- Addressing the cosmological tension by the Heisenberg uncertainty
- On the Existence of the Plateau Emission in High-Energy Gamma-Ray Burst LightCurves observed byFermi-LAT
- Closure relations during the plateau emission of Swift GRBs and the fundamental plane
- Do reverberation-measured H quasars provide a useful test of cosmology?
- The Mid-Infrared Luminosity Evolution and Luminosity Function of Quasars with SDSS and WISE
- Standardizing reverberation-measured Mg II time-lag quasars, by using the radius-luminosity relation, and constraining cosmological model parameters
- Viewing angle effects in quasar application to cosmology
Cited by in corpus (39)
- Seven hints that early-time new physics alone is not sufficient to solve the Hubble tension
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- Revealing Intrinsic Flat CDM Biases with Standardizable Candles
- The Gamma-ray Bursts fundamental plane correlation as a cosmological tool
- Gamma-Ray Bursts, Quasars, Baryonic Acoustic Oscillations, and Supernovae Ia: new statistical insights and cosmological constraints
- , , and other constraints from lower-redshift, non-CMB, expansion-rate data
- CDM Tensions: Localising Missing Physics through Consistency Checks
- Gamma-ray burst data strongly favor the three-parameter fundamental plane (Dainotti) correlation relation over the two-parameter one
- Reducing the uncertainty on the Hubble constant up to 35\% with an improved statistical analysis: different best-fit likelihoods for Supernovae Ia, Baryon Acoustic Oscillations, Quasars, and Gamma-Ray Bursts
- Metric gravity with dynamical dark energy as a scenario for the Hubble tension
- Tensions with the flat CDM model from high-redshift cosmography
- Standardizing reverberation-measured C IV time-lag quasars, and using them with standardized Mg II quasars to constrain cosmological parameters
- Quasars as high-redshift standard candles
- Quasar UV/X-ray relation luminosity distances are shorter than reverberation-measured radius-luminosity relation luminosity distances
- Current data are consistent with flat spatial hypersurfaces in the CDM cosmological model but favor more lensing than the model predicts
- Consistency study of high- and low-accreting Mg ii quasars: No significant effect of the Fe ii to Mg ii flux ratio on the radius-luminosity relation dispersion
- Quasars: standard candles up to z=7.5 with the precision of Supernovae Ia
- Can the Distance-Redshift Relation Be Determined from Correlations Between Luminosities?
- Expectations for time-delay measurements in active galactic nuclei with the Vera Rubin Observatory
- Does DESI DR2 challenge CDM paradigm ?
- Effect of extinction on quasar luminosity distances determined from UV and X-ray flux measurements
- Constraints on Cosmological Models from Quasars Calibrated with Type Ia Supernova by a Gaussian Process
- GRB Redshift Estimation using Machine Learning and the Associated Web-App
- Redshift-evolutionary X-ray and UV luminosity relation of quasars from Gaussian copula
- Testing the standardizability of, and deriving cosmological constraints from, a new Amati-correlated gamma-ray burst data compilation
- Radio-bright vs. Radio-dark Gamma-ray Bursts -- More Evidence for Distinct Progenitors
- Probing the H0 Tension with Holographic Dark Energy in Unimodular Gravity: Insights from DESI DR2
- Are quasars reliable standard candles?
- Low- and high-redshift H II starburst galaxies obey different luminosity-velocity dispersion relations
- Impact of Cosmology on Lorentz Invariance Violation Constraints from GRB Time-Delays
- Unveiling the Effects of Coupling Extended Proca-Nuevo Gravity on Cosmic Expansion with Recent Observations
- Evidence for evolving dark energy from DESI DR2 BAO and Pantheon, DES-Dovekie, and Union3
- Tilted non-spatially-flat inflation
- Testing the consistency of new Amati-correlated gamma-ray burst dataset cosmological constraints with those from better-established cosmological data
- On the Metric gravity Viability in Accounting for the Binned Supernovae Data
- Magnetic Reconnection as a Potential Driver of X-ray Variability in Active Galactic Nuclei
- Application of Efron-Petrosian method to radio pulsar fluxes
- SRG/eROSITA-SDSS view on the relation between X-ray and UV emission for quasars
- Gamma-Ray Bursts, Supernovae Ia and Baryon Acoustic Oscillations: a binned cosmological analysis