Values of H_0 from Models of the Gravitational Lens 0957+561
arXiv:astro-ph/9903274 · doi:10.1086/300949
Abstract
The lensed double QSO 0957+561 has a well-measured time delay and hence is useful for a global determination of H0. Uncertainty in the mass distribution of the lens is the largest source of uncertainty in the derived H0. We investigate the range of \hn produced by a set of lens models intended to mimic the full range of astrophysically plausible mass distributions, using as constraints the numerous multiply-imaged sources which have been detected. We obtain the first adequate fit to all the observations, but only if we include effects from the galaxy cluster beyond a constant local magnification and shear. Both the lens galaxy and the surrounding cluster must depart from circular symmetry as well. Lens models which are consistent with observations to 95% CL indicate H0=104^{+31}_{-23}(1-\kthirty) km/s/Mpc. Previous weak lensing measurements constrain the mean mass density within 30" of G1 to be kthirty=0.26+/-0.16 (95% CL), implying H0=77^{+29}_{-24}km/s/Mpc (95% CL). The best-fitting models span the range 65--80 km/s/Mpc. Further observations will shrink the confidence interval for both the mass model and \kthirty. The range of H0 allowed by the full gamut of our lens models is substantially larger than that implied by limiting consideration to simple power law density profiles. We therefore caution against use of simple isothermal or power-law mass models in the derivation of H0 from other time-delay systems. High-S/N imaging of multiple or extended lensed features will greatly reduce the H0 uncertainties when fitting complex models to time-delay lenses.
AASTEX, 48 pages 4 figures, 2 tables. Also available at: http://www.astro.lsa.umich.edu:80/users/philf/www/papers/list.html
Cited by in corpus (42)
- Final Results from the Hubble Space Telescope Key Project to Measure the Hubble Constant
- Quasar Microlensing at High Magnification and the Role of Dark Matter: Enhanced Fluctuations and Suppressed Saddlepoints
- Gravitational Lens Time Delays: A Statistical Assessment of Lens Model Dependences and Implications for the Global Hubble Constant
- The redshift distribution of gravitational lenses revisited: Constraints on galaxy mass evolution
- The Importance of Lens Galaxy Environments
- Pixelated Lenses and H_0 from Time-delay QSOs
- Analytic Time Delays and H_0 Estimates for Gravitational Lenses
- The Hubble time inferred from 10 time-delay lenses
- The Hubble constant from gravitational lens CLASS B0218+357 using the Advanced Camera for Surveys
- PKS 1830-211: A Face-On Spiral Galaxy Lens
- The Host Galaxy of the Lensed Quasar Q 0957+561
- Improved Constraints on the Gravitational Lens Q0957+561. II. Strong Lensing
- A New Estimate of the Hubble Time with Improved Modeling of Gravitational Lenses
- RX J0911+05: A Massive Cluster Lens at z=0.769
- What Fraction of Gravitational Lens Galaxies Lie in Groups?
- The Hubble constant inferred from 18 time-delay lenses
- SDSS J0246-0825: A New Gravitationally Lensed Quasar from the Sloan Digital Sky Survey
- Further Investigation of the Time Delay, Magnification Ratios, and Variability in the Gravitational Lens 0218+357
- PMN J1838-3427: A new gravitationally lensed quasar
- A lensed radio jet at milli-arcsecond resolution I: Bayesian comparison of parametric lens models
- Radial density profiles of time-delay lensing galaxies
- Constraining H0 from Chandra Observations of Q0957+561
- The Quintuple Quasar: Mass Models and Interpretation
- Chandra Detects a Rapid Flare in the Gravitationally Lensed Mini-BALQSO RX J0911.4+0551
- A New Microlensing Event in the Doubly-Imaged Quasar Q0957+561
- 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
- Improved Constraints on the Gravitational Lens Q0957+561. I. Weak Lensing
- Physical component analysis of galaxy cluster weak gravitational lensing data
- Magnified Views of the Ultrafast Outflow of the z = 1.51 AGN HS 0810+2554
- COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses IV. Models of prospective time-delay lenses
- Galaxy Structures and External Perturbations in Gravitational Lenses
- Spectroscopic confirmation of a cluster of galaxies at z=1 in the field of the gravitational lens MG2016+112
- Time-delay quasars: scales and orders of magnitudes
- Light Propagation in Inhomogeneous Universes. III. Distributions of Image Separations
- Strongly Lensed Jets, Time Delays, and the Value of H0
- Adaptive optics observations of the gravitationally lensed quasar SDSS J1405+0959
- New near-infrared observations and lens-model constraints for UM673
- 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
- The Central Component of Gravitational Lens Q0957+561