This paper examines free-form modeling of gravitational lenses using Bayesian ensembles of pixelated mass maps. The priors and algorithms from previous work are clarified and significant technical improvements are made. Lens reconstruction and Hubble time recovery are tested using mock data from simple analytic models and recent galaxy formation simulations. Finally, using published data, the Hubble time is inferred through the simultaneous reconstruction of 11 time delay lenses. The result is H0−1 = 13.7−1.0+1.8 Gyr (H0 = 71−8+6 km s−1 Mpc −1)
Gravitationally lensed quasars can be used as powerful cosmological and astrophysical probes. We can...
We present a refined gravitational lens model of the four-image lens system B1608+656 based on new a...
We present a new method to estimate the Hubble constant H_0 from the measured time delays in quadrup...
This paper examines free-form modeling of gravitational lenses using Bayesian ensembles of pixelated...
We present a simultaneous analysis of 10 galaxy lenses having time-delay measurements. For each lens...
In recent years, breakthroughs in methods and data have enabled gravitational time delays to emerge ...
Strong gravitational lens systems with measured time delays between the multiple images provide a me...
peer reviewedIn recent years, breakthroughs in methods and data have enabled gravitational time dela...
In recent years, breakthroughs in methods and data have enabled gravitational time delays to emerge ...
Strong gravitational lens systems with measured time delays between the multiple images provide a me...
Measured time delays between the images of a gravitationally lensed source can lead to a determinati...
We present a refined gravitational lens model of the four-image lens system B1608+656 based on new a...
We present a new method to estimate the Hubble constant H0 from the measured time delays in quadrupl...
We present a refined gravitational lens model of the four-image lens system B1608+656 based on new a...
The quadruple gravitational lens PG 1115+080 cannot be fit by a single ellipsoidal mass distribution...
Gravitationally lensed quasars can be used as powerful cosmological and astrophysical probes. We can...
We present a refined gravitational lens model of the four-image lens system B1608+656 based on new a...
We present a new method to estimate the Hubble constant H_0 from the measured time delays in quadrup...
This paper examines free-form modeling of gravitational lenses using Bayesian ensembles of pixelated...
We present a simultaneous analysis of 10 galaxy lenses having time-delay measurements. For each lens...
In recent years, breakthroughs in methods and data have enabled gravitational time delays to emerge ...
Strong gravitational lens systems with measured time delays between the multiple images provide a me...
peer reviewedIn recent years, breakthroughs in methods and data have enabled gravitational time dela...
In recent years, breakthroughs in methods and data have enabled gravitational time delays to emerge ...
Strong gravitational lens systems with measured time delays between the multiple images provide a me...
Measured time delays between the images of a gravitationally lensed source can lead to a determinati...
We present a refined gravitational lens model of the four-image lens system B1608+656 based on new a...
We present a new method to estimate the Hubble constant H0 from the measured time delays in quadrupl...
We present a refined gravitational lens model of the four-image lens system B1608+656 based on new a...
The quadruple gravitational lens PG 1115+080 cannot be fit by a single ellipsoidal mass distribution...
Gravitationally lensed quasars can be used as powerful cosmological and astrophysical probes. We can...
We present a refined gravitational lens model of the four-image lens system B1608+656 based on new a...
We present a new method to estimate the Hubble constant H_0 from the measured time delays in quadrup...