Probing the Cosmic Distance Duality Relation via Non-Parametric Reconstruction for High Redshifts
arXiv:2509.07848 · doi:10.3390/universe11090307
Abstract
We test the validity of the cosmic distance duality relation (CDDR) by combining angular diameter distance and luminosity distance measurements from recent cosmological observations. For the angular diameter distance, we use data from transverse baryon acoustic oscillations and galaxy clusters. On the other hand, the luminosity distance is obtained from Type Ia supernovae in the Pantheon+ sample and from quasar catalogs. To reduce the large dispersion in quasar luminosity distances, we apply a selection criterion based on their deviation from the CDM model and implement a binning procedure to suppress statistical noise. We reconstruct the CDDR using Gaussian Processes, a non-parametric supervised machine learning method. Our results show no significant deviation from the CDDR within the confidence level across the redshift range explored, supporting its validity even at high redshifts.
11 pages, 9 figures
References in corpus (86)
- Observational Probes of Cosmic Acceleration
- The Pantheon+ Analysis: Cosmological Constraints
- Cosmology with the Sunyaev-Zel'dovich Effect
- Challenges for CDM: An update
- The Physics of Cosmic Acceleration
- Reconstruction of dark energy and expansion dynamics using Gaussian processes
- Planck 2018 results. III. High Frequency Instrument data processing and frequency maps
- Determination of the Cosmic Distance Scale from Sunyaev-Zel'dovich Effect and Chandra X-ray Measurements of High Redshift Galaxy Clusters
- 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
- from cosmic chronometers and Type Ia supernovae, with Gaussian Processes and the novel Weighted Polynomial Regression method
- A Hubble Diagram for Quasars
- Cosmic distance-duality as probe of exotic physics and acceleration
- Determining the Cosmic Distance Scale from Interferometric Measurements of the Sunyaev-Zel'dovich Effect
- Measuring the Three-Dimensional Structure of Galaxy Clusters. I. Application to a Sample of 25 Clusters
- Quasars as standard candles III. Validation of a new sample for cosmological studies
- The distance duality relation from X-ray and SZ observations of clusters
- Constraints on cosmic opacity and beyond the standard model physics from cosmological distance measurements
- Nonparametric late-time expansion history reconstruction and implications for the Hubble tension in light of recent DESI and type Ia supernovae data
- Reconstructing the interaction between dark energy and dark matter using Gaussian Processes
- Cosmological-model-independent tests for the distance-duality relation from Galaxy Clusters and Type Ia Supernova
- Cosmic Distance Duality Relation and the Shape of Galaxy Clusters
- Tracing The Sound Horizon Scale With Photometric Redshift Surveys
- A test for cosmic distance duality
- Angular Baryon Acoustic Oscillation measure at z=2.225 from the SDSS quasar survey
- Gaussian Process Estimation of Transition Redshift
- Model-independent reconstruction of the Interacting Dark Energy Kernel: Binned and Gaussian process
- Two new tests to the distance duality relation with galaxy clusters
- Breaking of the equivalence principle in the electromagnetic sector and its cosmological signatures
- The blackness of the cosmic microwave background spectrum as a probe of the distance-duality relation
- Probing the Cosmic Distance Duality Relation with the Sunyaev-Zeldovich Effect, X-rays Observations and Supernovae Ia
- How to use GP: Effects of the mean function and hyperparameter selection on Gaussian Process regression
- Measurements of and reconstruction of the dark energy properties from a model-independent joint analysis
- Model-agnostic assessment of dark energy after DESI DR1 BAO
- BAO angular scale at z_eff = 0.11 with the SDSS blue galaxies
- Probing the cosmic distance duality with strong gravitational lensing and supernovae Ia data
- Gaussian processes reconstruction of dark energy from observational data
- The resilience of the Etherington-Hubble relation
- Inferring and with cosmic growth rate measurements using machine learning
- Testing the Mutual Consistency of the Pantheon and SDSS/eBOSS BAO Data Sets with Gaussian Processes
- Assessment of the cosmic distance duality relation using Gaussian Process
- Testing cosmic opacity from SNe Ia and Hubble parameter through three cosmological-model-independent methods
- Revisiting the cosmic distance duality relation with machine learning reconstruction methods: the combination of HII galaxies and ultra-compact radio quasars
- Model-independent constraints on and from the link between geometry and growth
- Cosmic opacity: cosmological-model-independent tests and their impacts on cosmic acceleration
- Neural network reconstructions for the Hubble parameter, growth rate and distance modulus
- Influence of the Bounds of the Hyperparameters on the Reconstruction of Hubble Constant with Gaussian Process
- Model independent bounds on Type Ia supernova absolute peak magnitude
- Testing the violation of the equivalence principle in the electromagnetic sector and its consequences in gravity
- The homogeneity scale and the growth rate of cosmic structures
- Revisiting the distance duality relation using a non-parametric regression method
- Defying the laws of Gravity I: model-independent reconstruction of the Universe expansion from growth data
- Kernel Selection for Gaussian Process in Cosmology: with Approximate Bayesian Computation Rejection and Nested Sampling
- Searching for cosmological signatures of the Einstein equivalence principle breaking
- Exploring new physics in the late Universe's expansion through non-parametric inference
- Searching for systematics in SNIa and galaxy cluster data using the cosmic duality relation
- Joint reconstructions of growth and expansion histories from stage-IV surveys with minimal assumptions. II. Modified gravity and massive neutrinos
- Non-parametric Reconstruction of Growth Index via Gaussian Processes
- A non-parametric test of variability of Type Ia supernovae luminosity and CDDR
- Improved null tests of CDM and FLRW in light of DESI DR2
- Baryon acoustic oscillations in thin redshift shells from BOSS DR12 and eBOSS DR16 galaxies
- Measuring dark energy with expansion and growth
- Testing the cosmic distance duality relation with Type Ia supernova and transverse BAO measurements
- Testing distance duality with CMB anisotropies
- Test of the cosmic distance duality relation for arbitrary spatial curvature
- Gaussian-process reconstructions and model building of quintom dark energy from latest cosmological observations
- Non-parametric reconstruction of cosmological observables using Gaussian Processes Regression
- Testing the Cosmic Distance Duality Relation Using Strong Gravitational Lensing Time Delays and Type Ia Supernovae
- Bayesian Comparison of the Cosmic Duality Scenarios
- In search of an interaction in the dark sector through Gaussian Process and ANN approaches
- Properties of SN-host galaxies
- Constraining H0 in General Dark Energy Models from Sunyaev-Zeldovich/X-ray Technique and Complementary Probes
- Testing the cosmic conservation of photon number with type Ia supernovae and ages of old objects
- Cosmography with the Sunyaev-Zeldovich effect and X-ray data
- Discriminating different models of luminosity-redshift distribution
- Analytical Gaussian Process Cosmography: Unveiling Insights into Matter-Energy Density Parameter at Present
- Constraints on the Hubble Parameter from galaxy clusters and the Validity of the Cosmic Distance Duality Relation
- Null tests with Gaussian Process
- Reconstructing the growth index with Gaussian Processes
- Distance-duality in theories with a nonminimal coupling to gravity
- Cosmic transparency and acceleration
- Improved constraints on violations of the Einstein equivalence principle in the electromagnetic sector with complementary cosmic probes
- Model-Independent Probe of Cosmic Distance Duality Relation
- Is CDM a good model for the clumpy Universe?
- Redshift evolution of the X-ray and UV luminosity relation of quasars: calibrated results from SNe Ia
- The robustness of angular diameter distances to the lens in the B1608+656 and RXJ1131-1231 systems