Constraints on cosmological models from strong gravitational lensing systems
arXiv:1105.6226 · doi:10.1088/1475-7516/2012/03/016
Abstract
Strong lensing has developed into an important astrophysical tool for probing both cosmology and galaxies (their structure, formation, and evolution). Using the gravitational lensing theory and cluster mass distribution model, we try to collect a relatively complete observational data concerning the Hubble constant independent ratio between two angular diameter distances from various large systematic gravitational lens surveys and lensing by galaxy clusters combined with X-ray observations, and check the possibility to use it in the future as complementary to other cosmological probes. On one hand, strongly gravitationally lensed quasar-galaxy systems create such a new opportunity by combining stellar kinematics (central velocity dispersion measurements) with lensing geometry (Einstein radius determination from position of images). We apply such a method to a combined gravitational lens data set including 70 data points from Sloan Lens ACS (SLACS) and Lens Structure and Dynamics survey (LSD). On the other hand, a new sample of 10 lensing galaxy clusters with redshifts ranging from 0.1 to 0.6 carefully selected from strong gravitational lensing systems with both X-ray satellite observations and optical giant luminous arcs, is also used to constrain three dark energy models (CDM, constant and CPL) under a flat universe assumption. For the full sample () and the restricted sample () including 36 two-image lenses and 10 strong lensing arcs, we obtain relatively good fitting values of basic cosmological parameters, which generally agree with the results already known in the literature. This results encourages further development of this method and its use on larger samples obtained in the future.
22 pages, 5 figures, 2 tables; accepted by JCAP
References in corpus (19)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Data Processing, Sky Maps, and Basic Results
- Improved Cosmological Constraints from New, Old and Combined Supernova Datasets
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- The Sloan Lens ACS Survey. X. Stellar, Dynamical, and Total Mass Correlations of Massive Early-type Galaxies
- The Sloan Lens ACS Survey. V. The Full ACS Strong-Lens Sample
- The Structure & Dynamics of Massive Early-type Galaxies: On Homology, Isothermality and Isotropy inside one Effective Radius
- Testing the Distance-Duality Relation with Galaxy Clusters and Type Ia Supernovae
- Cosmological parameters from strong gravitational lensing and stellar dynamics in elliptical galaxies
- Cosmic Equation of state from Strong Gravitational Lensing Systems
- The Sloan Lens ACS Survey. XI. Beyond Hubble resolution: size, luminosity and stellar mass of compact lensed galaxies at intermediate redshift
- Constraints on cosmological models from lens redshift data
- Testing power-law cosmology with galaxy clusters
- Shifting the Universe: Early Dark Energy and Standard Rulers
- The Sloan Bright Arcs Survey : Discovery of Seven New Strongly Lensed Galaxies from z=0.66-2.94
- Cosmological Studies with Radio Galaxies and Supernovae
- Combining Optical and X-ray Observations of Galaxy Clusters to Constrain Cosmological Parameters
- The distance duality relation and the temperature profile of Galaxy Clusters
Cited by in corpus (100)
- Hubble parameter measurement constraints on the cosmological deceleration-acceleration transition redshift
- Cosmology with Strong Lensing Systems
- The Gravitational-Wave Physics II: Progress
- Please repeat: Strong lensing of gravitational waves as a probe of compact binary and galaxy populations
- The Distance Duality Relation from Strong Gravitational Lensing
- Binned Hubble parameter measurements and the cosmological deceleration-acceleration transition
- Assessing the effect of lens mass model in cosmological application with updated galaxy-scale strong gravitational lensing sample
- The distance sum rule from strong lensing systems and quasars - test of cosmic curvature and beyond
- New observational constraints on cosmology from radio quasars
- Strong lens systems search in the Dark Energy Survey using Convolutional Neural Networks
- Measurements of the Hubble constant and cosmic curvature with quasars: ultra-compact radio structure and strong gravitational lensing
- Probing the cosmic distance duality with strong gravitational lensing and supernovae Ia data
- Test of parametrized post-Newtonian gravity with galaxy-scale strong lensing systems
- Self-Interacting Dark Matter and Small-Scale Gravitational Lenses in Galaxy Clusters
- Limits on the power-law mass and luminosity density profiles of elliptical galaxies from gravitational lensing systems
- Testing the cosmic curvature at high redshifts: the combination of LSST strong lensing systems and quasars as new standard candles
- Testing the speed of light over cosmological distances: the combination of strongly lensed and unlensed supernova Ia
- Revisiting Studies of the Statistical Property of a Strong Gravitational Lens System and Model-independent Constraint on the Curvature of the Universe
- A new test of gravity with the cosmological standard rulers in radio quasars
- What is parameterized diagnostics telling us in light of recent observations?
- Probing the cosmic distance duality relation using time delay lenses
- Testing the Etherington's distance duality relation at higher redshifts: the combination of radio quasars and gravitational waves
- Model-independent constraints on cosmic curvature: implication from updated Hubble diagram of high-redshift standard candles
- Cosmic equation of state from combined angular diameter distances: Does the tension with luminosity distances exist?
- Probing modified gravity theories with multiple measurements of high-redshift quasars
- Testing dark energy models with a new sample of strong-lensing systems
- Model-independent constraints on Lorentz invariance violation: implication from updated Gamma-ray burst observations
- Transition Redshift: New constraints from parametric and nonparametric methods
- Galaxy cluster strong lensing cosmography: cosmological constraints from a sample of regular galaxy clusters
- Testing Cosmic Distance-Duality Relation from Future Gravitational Wave Standard Sirens
- Strongly gravitational lensed SNe Ia as multi-messengers: Direct test of the Friedmann-Lema\^ıtre-Robertson-Walker metric
- Exploring the properties of milliarcsecond radio sources
- Constraints on a CDM model from strong gravitational lensing and updated Hubble parameter measurements
- Strongly Lensed Gravitational Waves and Electromagnetic Signals as Powerful Cosmic Rulers
- The cosmic distance duality relation with strong lensing and gravitational waves: an opacity-free test
- Constraints on Lorentz Invariance Violation with gamma-ray bursts via a Markov Chain Monte Carlo approach
- Cosmic opacity: cosmological-model-independent tests from gravitational waves and Type Ia Supernova
- A Comparison of Cosmological Models Using Strong Gravitational Lensing Galaxies
- The velocity dispersion function of early-type galaxies and its redshift evolution: the newest results from lens redshift test
- Testing the gas mass density profile of galaxy clusters with distance duality relation
- A Comparison of Cosmological Models Using Time Delay Lenses
- Constraints on f(R) cosmologies from strong gravitational lensing systems
- Implications from simulated strong gravitational lensing systems: constraining cosmological parameters using Gaussian Processes
- Revising the Hubble constant, spatial curvature and dark energy dynamics with the latest observations of quasars
- Test of the FLRW metric and curvature with strong lens time delays
- Curvature from strong gravitational lensing: a spatially closed Universe or systematics?
- Prospects of strongly lensed repeating fast radio bursts: complementary constraints on dark energy evolution
- Revisiting the Hubble constant, spatial curvature and cosmography with time-delay and cosmic chronometer observations
- A magnified glance into the dark sector: probing cosmological models with strong lensing in A1689
- Multiple measurements of quasars acting as standard probes: model independent calibration and exploring the Dark Energy Equation of States
- Model Selection with Strong-lensing Systems
- Inspiraling double compact object detection and lensing rate -- forecast for DECIGO and B-DECIGO
- Model-independent Estimations for the Cosmic Curvature from the Latest Strong Gravitational Lensing Systems
- Complementary constraints on dark energy equation of state from strongly lensed gravitational wave
- Testing f(R) gravity with the simulated data of gravitational waves from the Einstein Telescope
- Consistency testing for invariance of the speed of light at different redshifts: the newest results from strong lensing and type Ia supernovae observations
- Constraints on dark energy from the Lyα forest baryon acoustic oscillations measurement of the redshift 2.3 Hubble parameter
- Testing the interaction model with cosmological data and gamma-ray bursts
- Testing the Distance-Duality Relation from Strong Gravitational Lensing, Type Ia Supernovae and Gamma-Ray Bursts Data up to redshift
- A Distance-Deviation Consistency and Model-Independent Method to Test the Cosmic Distance-Duality Relation
- Multiple measurements of gravitational waves acting as standard probes: model-independent constraints on the cosmic curvature with DECIGO
- Implications of the lens redshift distribution of strong lensing systems: cosmological parameters and the global properties of early-type galaxies
- Comparison of cosmological models using standard rulers and candles
- Testing the cosmic distance duality relation with Type Ia supernova and transverse BAO measurements
- Extragalactic sources in Cosmic Microwave Background maps
- Probing variation of the fine-structure constant in runaway dilaton models using Strong Gravitational Lensing and Type Ia Supernovae
- DECi-hertz Interferometer Gravitational-wave Observatory: Forecast constraints on the cosmic curvature with LSST strong lenses
- Cosmological Tests With Strong Gravitational Lenses using Gaussian Processes
- Cosmological test using strong gravitational lensing systems
- Cosmological Parameter Estimation Using Current and Future Observations of Strong Gravitational Lensing
- No evidence for the evolution of mass density power-law index from strong gravitational lensing observation
- Phase transitions and entropy force of charged de Sitter black holes with cloud of string and quintessence
- Testing cosmic opacity with the combination of strongly lensed and unlensed supernova Ia
- Using variability and VLBI to measure cosmological distances
- Direct tests of General Relativity under screening effect with galaxy-scale strong lensing systems
- Reconstructing the extended structure of multiple sources strongly lensed by the ultra-massive elliptical galaxy SDSS J0100+1818
- Deep learning method in testing the cosmic distance duality relation
- Constraints On Dark Energy Models From Galaxy Clusters and Gravitational Lensing Data
- Cosmography using strong lensing systems and cosmic chronometers
- Revisiting Friedmann-like cosmology with torsion: newest constraints from high-redshift observations
- Testing the anisotropy of the Universe with the distance duality relation
- Statistical analysis with cosmic-expansion-rate measurements and two-point diagnostics
- Constraining dark energy using observational growth rate data
- Model-Independent Probe of Cosmic Distance Duality Relation
- A Hubble Constant Determination Through Quasar Time Delays and Type Ia Supernovae
- Gravitational Lensing by Spherical Lenses
- Cosmic Constraints to wCDM Model from Strong Gravitational Lensing
- Pixel-level modelling of group-scale strong lens CASSOWARY 19
- Cosmography from accurate mass modeling of the lens group SDSS J0100+1818: five sources at three different redshifts
- Constraints on Holographic cosmologies from strong lensing systems
- Linear perturbations spectra for dynamical dark energy inspired by modified gravity
- Cosmological parameters from lenses distance ratio
- Predicted multiply-imaged X-ray AGNs in the XXL survey
- Exploring the possible evolution of the mass density power-law index of strong gravitational lenses with a model-independent method
- Determining from distance sum rule combining gamma-ray bursts with observational Hubble data and strong gravitational lensing
- A Joint Analysis of Strong Lensing and Type Ia Supernovae to Determine the Hubble Constant
- Investigating the Redshift Evolution of Lensing Galaxy Density Slopes via Model-Independent Distance Ratios
- Testing Linearly Coasting Cosmology by Strong Lensing System and Pantheon+ Data
- Model selection using time-delay lenses
- Lenses In VoicE (LIVE): Searching for strong gravitational lenses in the VOICE@VST survey using Convolutional Neural Networks