Testing the standardizability of, and deriving cosmological constraints from, a new Amati-correlated gamma-ray burst data compilation
arXiv:2404.08697 · doi:10.1088/1475-7516/2024/10/093
Abstract
By using gamma-ray burst (GRB) data to simultaneously constrain Amati correlation parameters and cosmological parameters in six spatially-flat and nonflat dark energy cosmological models, we show that an updated 220 GRB version of the Jia et al. [Mon. Not. R. Astron. Soc. 516, 2575 (2022)] GRB data compilation are standardizable through the Amati correlation and so can be used for cosmological analyses. However, the resulting GRB data constraints on the current value of the nonrelativistic matter density parameter, , are in tension with those from a joint analysis of better-established Hubble parameter [] and baryon acoustic oscillation (BAO) data for most of the cosmological models we consider, indicating that these GRB data cannot be jointly used with better-established + BAO data to constrain cosmological parameters.
20 pages, 2 figures, JCAP accepted version
References in corpus (50)
- Cosmology with gamma-ray bursts: I. The Hubble diagram through the calibrated - correlation
- A Cosmology-Independent Calibration of Gamma-Ray Burst Luminosity Relations and the Hubble Diagram
- Using Pantheon and DES supernova, baryon acoustic oscillation, and Hubble parameter data to constrain the Hubble constant, dark energy dynamics, and spatial curvature
- The relation for massive bursts of star formation
- Determining the range of validity of quasar X-ray and UV flux measurements for constraining cosmological model parameters
- Cosmic chronometers to calibrate the ladders and measure the curvature of the Universe. A model-independent study
- Standardizing Platinum Dainotti-correlated gamma-ray bursts, and using them with standardized Amati-correlated gamma-ray bursts to constrain cosmological model parameters
- Constraining the Dark Energy Equation of State with HII Galaxies
- Quasar standardization: Overcoming Selection Biases and Redshift Evolution
- Spectral analysis of Fermi-LAT gamma-ray bursts with known redshift and their potential use as cosmological standard candles
- Independent Cosmological Constraints from high-z HII Galaxies
- Cosmological constraints from HII starburst galaxy apparent magnitude and other cosmological measurements
- , , and other constraints from lower-redshift, non-CMB, expansion-rate data
- The resilience of the Etherington-Hubble relation
- Constraints on the generalized Chaplygin gas model including gamma-ray bursts via a Markov Chain Monte Carlo approach
- Gamma-ray burst data strongly favor the three-parameter fundamental plane (Dainotti) correlation relation over the two-parameter one
- Model-independent measurement of cosmic curvature with the latest and SNe Ia data: A comprehensive investigation
- Generalized tracker quintessence models for dark energy
- Calibrating Gamma-Ray Bursts by Using a Gaussian Process with Type Ia Supernovae
- Gamma ray burst constraints on cosmological models from the improved Amati correlation
- Testing Dark Energy Models with Gamma-Ray Bursts Calibrated from the Observational Data through a Gaussian Process
- - correlation of gamma ray bursts: calibration and cosmological applications
- Constraining the spatial curvature with cosmic expansion history in a cosmological model with a non-standard sound horizon
- Constraining the curvature density parameter in cosmology
- Standardizing reverberation-measured C IV time-lag quasars, and using them with standardized Mg II quasars to constrain cosmological parameters
- Cosmological constraints from HII starburst galaxy, quasar angular size, and other measurements
- The improved Amati correlations from Gaussian copula
- Tomographic Alcock-Paczynski Test with Redshift-Space Correlation Function: Evidence for the Dark Energy Equation of State Parameter w>-1
- 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
- Do reverberation-measured H quasars provide a useful test of cosmology?
- Gaussian Processes Reconstruction of the Dark Energy Potential
- 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
- Observational Constraints on Dynamical Dark Energy Models
- Can the Distance-Redshift Relation Be Determined from Correlations Between Luminosities?
- Comparing the scalar-field dark energy models with recent observations
- Quintessential Cosmological Tensions
- Cosmological Constraints on Non-flat Exponential Gravity
- Accretion disks, quasars and cosmology: meandering towards understanding
- Null test for cosmic curvature using Gaussian process
- Gamma Rays Bursts: A Viable Cosmological Probe?
- Constraints on the cosmological parameters with three-parameter correlation of Gamma-ray bursts
- Effect of extinction on quasar luminosity distances determined from UV and X-ray flux measurements
- Constraints from Fermi observations of Long Gamma-Ray Bursts on cosmological parameters
- Low redshift calibration of the Amati relation using galaxy clusters
- Effects of heterogeneous data sets and time-lag measurement techniques on cosmological parameter constraints from MgII and CIV reverberation-mapped quasar data
- Constraining the emergent dark energy models with observational data at intermediate redshift
- Revisiting the epoch of cosmic acceleration
- Low- and high-redshift H II starburst galaxies obey different luminosity-velocity dispersion relations
- Testing the phenomenological interacting dark energy model with gamma-ray bursts and Pantheon+ type Ia supernovae
Cited by in corpus (6)
- Cosmological Constraints on the Phenomenological Interacting Dark Energy Model with Fermi Gamma-Ray Bursts and DESI DR2
- Gamma-Ray Bursts Calibrated from the Observational Data in Artificial Neural Network Framework
- Testing the consistency of new Amati-correlated gamma-ray burst dataset cosmological constraints with those from better-established cosmological data
- Gamma-Ray Bursts Calibrated by Using Artificial Neural Networks from the Pantheon+ Sample
- Testing the Distance Duality Relation with Cosmological Observations at high Redshift using Artificial Neural Network
- A test of Amati relation using HII galaxy distances