Pixelated Lenses and H_0 from Time-delay QSOs
arXiv:astro-ph/9911231 · doi:10.1086/301234
Abstract
Observed time delays between images of a lensed QSO lead to the determination of the Hubble constant by Refsdal's method, provided the mass distribution in the lensing galaxy is reasonably well known. Since the two or four QSO images usually observed are woefully inadequate by themselves to provide a unique reconstruction of the galaxy mass, most previous reconstructions have been limited to simple parameterized models, which may lead to large systematic errors in the derived H_0 by failing to consider enough possibilities for the mass distribution of the lens. We use non-parametric modeling of galaxy lenses to better explore physically plausible but not overly constrained galaxy mass maps, all of which reproduce the lensing observables exactly, and derive the corresponding distribution of H_0's. Blind tests - where one of us simulated galaxy lenses, lensing observables, and a value for H_0, and the other applied our modeling technique to estimate H_0 indicate that our procedure is reliable. For four simulated lensed QSOs the distribution of inferred H_0 have an uncertainty of \simeq 10% at 90% confidence. Application to published observations of the two best constrained time-delay lenses, PG1115+080 and B1608+656, yields H_0=61 +/- 11 km/s/Mpc at 68% confidence and 61 +/- 18 km/s/Mpc at 90% confidence.
27 pages, including 17 figs, LaTeX; accepted to AJ
References in corpus (1)
Cited by in corpus (70)
- Final Results from the Hubble Space Telescope Key Project to Measure the Hubble Constant
- Observational constraints on dark energy with generalized equations of state
- Dark Energy: the equation of state description versus scalar-tensor or modified gravity
- What Do Gravitational Lens Time Delays Measure?
- The internal structure of the lens PG1115+080: breaking degeneracies in the value of the Hubble Constant
- A Determination of H_0 with the CLASS Gravitational Lens B1608+656: III. A Significant Improvement in the Precision of the Time Delay Measurements
- The Hubble Constant from the Gravitational Lens B1608+656
- Self-Similar Models for the Mass Profiles of Early-type Lens Galaxies
- The Importance of Einstein Rings
- Lensing Degeneracies Revisited
- Dissecting the Gravitational Lens B1608+656. I. Lens Potential Reconstruction
- Constraints on Galaxy Density Profiles from Strong Gravitational Lensing: The Case of B 1933+503
- Noether symmetry approach in phantom quintessence cosmology
- A portable modeler of lensed quasars
- An Optical Time-Delay for the Lensed BAL Quasar HE2149-2745
- The Hubble Constant
- f(R) theories of gravity in Palatini approach matched with observations
- Gravitational lens time delays for distant supernovae: break the degeneracy between radial mass profiles and the Hubble constant
- Analytic Time Delays and H_0 Estimates for Gravitational Lenses
- Strong lensing time-delay cosmography in the 2020s
- The Hubble time inferred from 10 time-delay lenses
- Stellar and total mass in early-type lensing galaxies
- Unified dark energy models : a phenomenological approach
- The Hubble constant from gravitational lens CLASS B0218+357 using the Advanced Camera for Surveys
- Degeneracies and scaling relations in general power-law models for gravitational lenses
- Non-parametric mass reconstruction of A1689 from strong lensing data with SLAP
- PKS 1830-211: A Face-On Spiral Galaxy Lens
- Unveiling dark halos in lensing galaxies
- Beyond the perfect fluid hypothesis for dark energy equation of state
- Gravitational lenses as cosmic rulers: density of dark matter and dark energy from time delays and velocity dispersions
- Improved Constraints on the Gravitational Lens Q0957+561. II. Strong Lensing
- Constraining dark energy models using the lookback time to galaxy clusters and the age of the universe
- A New Estimate of the Hubble Time with Improved Modeling of Gravitational Lenses
- An optical time delay for the double gravitational lens system FBQ 0951+2635
- Gravitational lensing model degeneracies: Is steepness all-important?
- The Hubble constant from eight time-delay galaxy lenses
- Time Delay Lens Modelling Challenge
- PMN J1838-3427: A new gravitationally lensed quasar
- Lens Galaxy Properties of SBS1520+530: Insights from Keck Spectroscopy and AO Imaging
- Models of the giant quadruple quasar SDSS J1004+4112
- Cosmological distance indicators
- Radial density profiles of time-delay lensing galaxies
- Ejection of Supernova-Enriched Gas From Dwarf Disk Galaxies
- Strong Lensing by Galaxies
- Gravitational Lens Recovery with GLASS: Measuring the mass profile and shape of a lens
- Beware the Non-uniqueness of Einstein Rings
- The cluster lens ACO 1703: redshift contrast and the inner profile
- Systematic uncertainties in gravitational lensing models: a semi-analytical study of PG1115+080
- The anatomy of a quadruply imaged gravitational lens system
- A new method for the estimate of H_0 from quadruply imaged gravitational lens systems
- A simple analysis of halo density profiles using gravitational lensing time delays
- Generalised model-independent characterisation of strong gravitational lenses VI: the origin of the formalism intrinsic degeneracies and their influence on
- COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses IV. Models of prospective time-delay lenses
- Inflessence: a phenomenological model for inflationary quintessence
- Is B1422+231 a Golden Lens?
- Intrinsic Degeneracy of Gravitational Lens Time Delays: the case for a simple quadruple system in CDM cosmology
- Gravitational lensing potential reconstruction in quadruply imaged systems
- Observational Cosmology
- Hubble Constant at Intermediate Redshift using the CO-Line Tully-Fisher Relation
- Dipole anisotropies of IRAS galaxies and the contribution of a large-scale local void
- Lens modelling and H_0 estimate in quadruply lensed systems
- PG 1115+080: variations of the A2/A1 flux ratio and new values of the time delays
- Halting eternal acceleration with an effective negative cosmological constant
- Bayesian approach to gravitational lens model selection: constraining H_0 with a selected sample of strong lenses
- Lessons from a blind study of simulated lenses: image reconstructions do not always reproduce true convergence
- Dynamical and gravitational lensing properties of a new phenomenological model of elliptical galaxies
- Mapping the distribution of luminous and dark matter in strong lensing galaxies
- A doubled double hotspot in J0816+5003 and the logarithmic slope of the lensing potential
- Applications of Bayesian Probability Theory in Astrophysics
- Cluster abundance evolution and the Sunyaev-Zeldovich effect in various cosmological models