A Comparison of Cosmological Models Using Strong Gravitational Lensing Galaxies
arXiv:1410.0875 · doi:10.1088/0004-6256/149/1/2
Abstract
Strongly gravitationally lensed quasar-galaxy systems allow us to compare competing cosmologies as long as one can be reasonably sure of the mass distribution within the intervening lens. In this paper, we assemble a catalog of 69 such systems, and carry out a one-on-one comparison between the standard model, LCDM, and the R_h=ct Universe. We find that both models account for the lens observations quite well, though the precision of these measurements does not appear to be good enough to favor one model over the other. Part of the reason is the so-called bulge-halo conspiracy that, on average, results in a baryonic velocity dispersion within a fraction of the optical effective radius virtually identical to that expected for the whole luminous-dark matter distribution. Given the limitations of doing precision cosmological testing using the current sample, we also carry out Monte Carlo simulations based on the current lens measurements to estimate how large the source catalog would have to be in order to rule out either model at a ~99.7% confidence level. We find that if the real cosmology is LCDM, a sample of ~200 strong gravitational lenses would be sufficient to rule out R_h=ct at this level of accuracy, while ~300 strong gravitational lenses would be required to rule out LCDM if the real Universe were instead R_h=ct. The difference in required sample size reflects the greater number of free parameters available to fit the data with LCDM. We point out that, should the R_h=ct Universe eventually emerge as the correct cosmology, its lack of any free parameters for this kind of work will provide a remarkably powerful probe of the mass structure in lensing galaxies, and a means of better understanding the origin of the bulge-halo conspiracy.
34 Pages, 6 Figures and 5 Tables. Accepted for publication in the Astronomical Journal. arXiv admin note: text overlap with arXiv:1405.2388
References in corpus (11)
- Cosmology and the Fate of Dilatation Symmetry
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- A Holographic Dark Energy Model from Ricci Scalar Curvature
- 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
- Statefinder Diagnosis for Ricci Dark Energy
- Cosmological parameters from strong gravitational lensing and stellar dynamics in elliptical galaxies
- A Comparison of Cosmological Models Using Time Delay Lenses
- Constraints on f(R) cosmologies from strong gravitational lensing systems
- Mass models and environment of the new quadruply lensed quasar SDSS J1330+1810
- A twelve-image gravitational lens system in the z ~ 0.84 cluster Cl J0152.7-1357
Cited by in corpus (27)
- A comparison of the R_h=ct and LCDM cosmologies using the Cosmic Distance Duality Relation
- The Linear Growth of Structure in the R_h=ct Universe
- Model-independent Test of the Cosmic Distance Duality Relation
- Testing dark energy models with a new sample of strong-lensing systems
- Transition Redshift: New constraints from parametric and nonparametric methods
- A Test of Cosmological Models using high-z Measurements of H(z)
- Reconstruction of the HII Galaxy Hubble Diagram using Gaussian Processes
- Alcock-Paczynski Test with Model-independent BAO Data
- Strongly Lensed Gravitational Waves and Electromagnetic Signals as Powerful Cosmic Rulers
- Cosmological test with the QSO Hubble diagram
- The Epoch of Reionization in the R_h=ct Universe
- Implications from simulated strong gravitational lensing systems: constraining cosmological parameters using Gaussian Processes
- Model Selection with Strong-lensing Systems
- A Distance-Deviation Consistency and Model-Independent Method to Test the Cosmic Distance-Duality Relation
- Cosmological Tests With Strong Gravitational Lenses using Gaussian Processes
- The Age-Redshift Relationship of Old Passive Galaxies
- Cosmological test using strong gravitational lensing systems
- Friedmann-Robertson-Walker models do not require zero active mass
- The universe and quintessence
- Unseen Progenitors of Luminous High-z Quasars in the R_h=ct Universe
- Puzzling initial conditions in the R_h=ct model
- Model-Independent Probe of Cosmic Distance Duality Relation
- Model Selection based on the Angular-Diameter Distance to the Compact Structure in Radio Quasars
- Cosmological Perturbations without Inflation
- Tantalizing New Physics from the Cosmic Purview
- Exploring the possible evolution of the mass density power-law index of strong gravitational lenses with a model-independent method
- A Joint Analysis of Strong Lensing and Type Ia Supernovae to Determine the Hubble Constant