What Do Gravitational Lens Time Delays Measure?
arXiv:astro-ph/0205319 · doi:10.1086/342476
Abstract
Gravitational lens time delays depend on the Hubble constant, the observed image positions, and the surface mass density of the lens in the annulus between the images. Simple time delay lenses like PG1115+080, SBS1520+530, B1600+434, PKS1830-211 and HE2149-2745 have H0 = A(1-<k>)+B<k>(e-1) where the two coefficients A ~ 90km/s Mpc and B ~ 10km/s Mpc depend on the measured delays and the observed image positions, <k> is the mean surface density in the annulus between the images, and there is a small correction from the logarithmic slope e ~ 2 of the surface density profile, k ~ R^(1-e), in the annulus. These 5 systems are very homogeneous, since for fixed H0=100h km/s Mpc they must have the same surface density, <k>=1.11-1.22 h +/- 0.04, with an upper bound of 0.07 on any dispersion in <k> beyond those due to the measurement errors. If the lenses have their expected dark halos, <k> ~ 0.5 and H0=51+/-5 km/s Mpc, while if they have constant mass-to-light ratios, <k> ~ 0.1-0.2 and H0=73+/-8 km/s Mpc. More complicated lenses with multiple components or strong perturbations from nearby clusters, like RXJ0911+0551 and Q0957+561, are easily recognized because they have significantly different coefficients.
Submitted to ApJ. 18 pages, no figures
References in corpus (10)
- The internal structure and formation of early-type galaxies: the gravitational--lens system MG2016+112 at z=1.004
- Virial masses of galactic halos from galaxy-galaxy lensing: theoretical modeling and application to SDSS
- An Optical Time-Delay for the Lensed BAL Quasar HE2149-2745
- Degeneracies and scaling relations in general power-law models for gravitational lenses
- PKS 1830-211: A Face-On Spiral Galaxy Lens
- The time delay of the quadruple quasar RX J0911.4+0551
- Strong Gravitational Lensing Time Delay Statistics and the Density Profile of Dark Halos
- Cosmic alignment towards the radio Einstein ring PKS 1830-211 ?
- Constraining H0 from Chandra Observations of Q0957+561
- The lensing system towards the doubly imaged quasar SBS 1520+530
Cited by in corpus (134)
- H0LiCOW XIII. A 2.4% measurement of from lensed quasars: tension between early and late-Universe probes
- Challenges for CDM: An update
- The Sloan Lens ACS Survey. III - The Structure and Formation of Early-type Galaxies and their Evolution since z~1
- H0LiCOW V. New COSMOGRAIL time delays of HE0435-1223: to 3.8% precision from strong lensing in a flat CDM model
- Dissecting the Gravitational Lens B1608+656. II. Precision Measurements of the Hubble Constant, Spatial Curvature, and the Dark Energy Equation of State
- Massive Dark-matter halos and Evolution of Early-type Galaxies to z=1
- Gravitational Lensing
- Gravitationally lensed quasars and supernovae in future wide-field optical imaging surveys
- TDCOSMO IV: Hierarchical time-delay cosmography -- joint inference of the Hubble constant and galaxy density profiles
- Two accurate time-delay distances from strong lensing: Implications for cosmology
- H0LiCOW I. Lenses in COSMOGRAIL's Wellspring: Program Overview
- Quantitative Interpretation of Quasar Microlensing Light Curves
- The Sloan-Lens ACS Survey II: stellar populations and internal structure of early-type lens galaxies
- Mass-sheet degeneracy, power-law models and external convergence: Impact on the determination of the Hubble constant from gravitational lensing
- Time Delay Cosmography
- TDCOSMO. I. An exploration of systematic uncertainties in the inference of from time-delay cosmography
- The Sloan Lens ACS Survey. VII. Elliptical Galaxy Scaling Laws from Direct Observational Mass Measurements
- H0LiCOW IV. Lens mass model of HE 0435-1223 and blind measurement of its time-delay distance for cosmology
- X-ray Microlensing in RXJ1131-1231 and HE1104-1805
- The Time Delays of Gravitational Lens HE0435-1223: An Early-Type Galaxy With a Rising Rotation Curve
- Gravitational Lens Time Delays: A Statistical Assessment of Lens Model Dependences and Implications for the Global 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 Sloan Digital Sky Survey Quasar Lens Search. V. Final Catalog from the Seventh Data Release
- Strong Lens Time Delay Challenge: II. Results of TDC1
- The Hubble Constant from the Gravitational Lens B1608+656
- Self-Similar Models for the Mass Profiles of Early-type Lens Galaxies
- The Evolution and Structure of Early-type Field Galaxies: A Combined Statistical Analysis of Gravitational Lenses
- COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses XIII: Time delays and 9-yr optical monitoring of the lensed quasar RX J1131-1231
- A New Channel for Detecting Dark Matter Substructure in Galaxies: Gravitational Lens Time Delays
- Cosmological Constraints from the double source plane lens SDSSJ0946+1006
- X-Ray and Optical Microlensing in the Lensed Quasar PG 1115+080
- The Sloan Lens ACS Survey. VIII. The relation between environment and internal structure of early-type galaxies
- The Dark Universe
- The mass-sheet degeneracy and time-delay cosmography: Analysis of the strong lens RXJ1131-1231
- H0LiCOW XII. Lens mass model of WFI2033-4723 and blind measurement of its time-delay distance and
- Microlensing Makes Lensed Quasar Time Delays Significantly Time Variable
- The Importance of Lens Galaxy Environments
- The Hubble Constant
- A portable modeler of lensed quasars
- The Baryon Fractions and Mass-to-Light Ratios of Early-Type Galaxies
- WFI J2026-4536 and WFI J2033-4723: Two New Quadruple Gravitational Lenses
- Sloan Digital Sky Survey Spectroscopic Lens Search. I. Discovery of Intermediate-Redshift Star-Forming Galaxies Behind Foreground Luminous Red Galaxies
- Measuring the value of the Hubble constant "à la Refsdal"
- Gravitational lens time delays for distant supernovae: break the degeneracy between radial mass profiles and the Hubble constant
- Quantifying Environmental and Line-of-Sight Effects in Models of Strong Gravitational Lens Systems
- Over-constrained Gravitational Lens Models and the Hubble Constant
- SDSS J1029+2623: A Gravitationally Lensed Quasar with an Image Separation of 22.5 Arcseconds
- The Hubble constant from gravitational lens CLASS B0218+357 using the Advanced Camera for Surveys
- COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses VII. Time delays and the Hubble constant from WFI J2033-4723
- Models for the lens and source of B0218+357 - A LensClean approach to determine H0
- Improved Constraints on the Gravitational Lens Q0957+561. II. Strong Lensing
- Substructure in the lens HE 0435-1223
- COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses VI. Redshift of the lensing galaxy in seven gravitationally lensed quasars
- Could quasar lensing time delays hint to a core component in halos, instead of H0 tension?
- Gravitational lensing model degeneracies: Is steepness all-important?
- H0LiCOW II. Spectroscopic survey and galaxy-group identification of the strong gravitational lens system HE0435-1223
- COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses V. The time delay in SDSS J1650+4251
- Constraining the dark energy equation of state with double source plane strong lenses
- Cosmography from two-image lens systems: overcoming the lens profile slope degeneracy
- Constraints on interacting dark energy models from time-delay cosmography with seven lensed quasars
- Microlensing of the Lensed Quasar SDSS0924+0219
- On the Choice of Lens Density Profile in Time Delay Cosmography
- Time delay measurement of the lensed quasar HE1104-1805
- The Gravitational Lens -- Galaxy Group Connection. II. Groups Associated with B2319+051 and B1600+434
- Accretion Disk Size Measurement and Time Delays in the Lensed Quasar WFI 2033-4723
- Spectroscopic Redshifts for Seven Lens Galaxies
- Discovering gravitationally lensed gravitational waves: predicted rates, candidate selection, and localization with the Vera Rubin Observatory
- Science Programs for a 2 m-class Telescope at Dome C, Antarctica: PILOT, the Pathfinder for an International Large Optical Telescope
- Gravitational Lens Time Delays in CDM
- The Hubble constant from strongly lensed supernovae with standardizable magnifications
- Improved time-delay lens modelling and inference with transient sources
- Noise in strong lensing cosmography
- A Two-Year Time Delay for the Lensed Quasar SDSS J1029+2623
- Cosmological distance indicators
- The clustering of ultra-high energy cosmic rays and their sources
- The mass profile of early-type galaxies in overdense environments: the case of the double source plane gravitational lens SL2SJ02176-0513
- Over-constrained Models of Time Delay Lenses Redux: How the Angular Tail Wags the Radial Dog
- Galaxy density profiles and shapes -- I. simulation pipeline for lensing by realistic galaxy models
- SDSS J1650+4251: A New Gravitational Lens
- COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses VIII. Deconvolution of high resolution near-IR images and simple mass models for 7 gravitationally lensed quasars
- Gravitational lensing formalism in a curved arc basis: A continuous description of observables and degeneracies from the weak to the strong lensing regime
- Time delay of SBS 0909+532
- Clustering, Angular Size and Dark Energy
- Strong Lensing by Galaxies
- The Quintuple Quasar: Mass Models and Interpretation
- Gravitational Lens Recovery with GLASS: Measuring the mass profile and shape of a lens
- Lensing Probabilities for Spectroscopically Selected Galaxy-Galaxy Strong Lenses
- Prospects for the Determination of H_0 through Observation of Multiply Imaged Supernovae in Galaxy Cluster Fields
- Gravitational lensing tension from ultralight axion galactic cores
- GERLUMPH Data Release 2: 2.5 billion simulated microlensing light curves
- Resolving the High Energy Universe with Strong Gravitational Lensing: The Case of PKS 1830-211
- Steepened inner density profiles of group galaxies via interactions: An N-body analysis
- Ambiguities in gravitational lens models: impact on time delays of the source position transformation
- Gravitational Lenses as High-Resolution Telescopes
- Estimating cosmological parameters from future gravitational lens surveys
- A simple analysis of halo density profiles using gravitational lensing time delays
- Constraining the dark energy and smoothness-parameter with supernovae
- Time delay between images of the lensed quasar UM673
- The Large Array Survey Telescope -- Science Goals
- Constraining the dark energy and smoothness parameter with type Ia Supernovae and Gamma-Ray Bursts
- Chandra Observations of Gravitational Lenses B1600+434 and B1608+656
- Cosmology from weak lensing alone and implications for the Hubble tension
- A Gravitationally Lensed Quasar Discovered in OGLE
- Time Delays for the Giant Quadruple Lensed Quasar SDSS J1004+4112: Prospects for Determining the Density Profile of the Lensing Cluster
- Near-IR search for lensed supernovae behind galaxy clusters: III. Implications for cluster modeling and cosmology
- Fast and Reliable Time Delay Estimation of Strong Lens Systems Using Method of Smoothing and Cross-Correlation
- Precision cosmology with time delay lenses: high resolution imaging requirements
- Intrinsic Degeneracy of Gravitational Lens Time Delays: the case for a simple quadruple system in CDM cosmology
- Identifying Anomalies in Gravitational Lens Time Delays
- Measuring time delays: II. Using observations of the unresolved flux and astrometry
- Improving efficiency in radio surveys for gravitational lenses
- The rates and time-delay distribution of multiply imaged supernovae behind lensing clusters
- Strongly lensed SN Refsdal: refining time delays based on the supernova explosion models
- Hubble Constant from LSST Strong lens time delays with microlensing systematics
- A new gravitational lens from the MUSCLES survey: ULAS J082016.1+081216
- PG 1115+080: variations of the A2/A1 flux ratio and new values of the time delays
- Strong-lensing cosmography using third-generation gravitational-wave detectors
- Bayesian approach to gravitational lens model selection: constraining H_0 with a selected sample of strong lenses
- Strongly Lensed Jets, Time Delays, and the Value of H0
- The Radio Variability of the Gravitational Lens PMN J1838-3427
- Strong lensing, cosmology and lensing halos
- Large-Distance Lens Uncertainties and Time-Delay Measurements of
- TDCOSMO XVII. New time delays in 22 lensed quasars from optical monitoring with the ESO-VST 2.6m and MPG 2.2m telescopes
- Unveiling the Universe with Emerging Cosmological Probes
- Foreground biases in strong gravitational lensing
- Dynamical and gravitational lensing properties of a new phenomenological model of elliptical galaxies
- Time Delay Analysis of the Lensed Quasar SDSS J1001+5027
- TDCOSMO. XXIII. Measurement of the Hubble constant from the doubly lensed quasar HE1104-1805
- TDCOSMO: XX. WFI2033--4723, the First Quadruply-Imaged Quasar Modeled with JWST Imaging
- Time delays in PG1115+080: new estimates
- Host group degeneracy in gravitational lensing time delay determination of
- The Hubble constant from galaxy lenses: impacts of triaxiality and model degeneracies
- Single-object Imaging and Spectroscopy to Enhance Dark Energy Science from LSST
- The Central Component of Gravitational Lens Q0957+561