Strong lensing time delays can measure the Hubble constant H0 independently of any other probe. Assuming commonly used forms for the radial mass density profile of the lenses, a 2% precision has been achieved with seven Time-Delay Cosmography (TDCOSMO) lenses, in tension with the H0 from the cosmic microwave background. However, without assumptions on the radial mass density profile – and relying exclusively on stellar kinematics to break the mass-sheet degeneracy – the precision drops to 8% with the current data obtained using the seven TDCOSMO lenses, which is insufficient to resolve the H0 tension. With the addition of external information from 33 Sloan Lens ACS (SLACS) lenses, the precision improves to 5% if the deflectors of TDCOSMO an...
Recently, a significant tension has been reported between two measurements of the Hubble constant (H...
Time-delay cosmography of lensed quasars has achieved 2.4% precision on the measurement of the Hubbl...
Time-delay cosmography of lensed quasars has achieved 2.4% precision on the measurement of the Hubbl...
Strong lensing time delays can measure the Hubble constant H0 independently of any other probe. Assu...
Strong lensing time delays can measure the Hubble constant H0 independently of any other probe. Assu...
Strong-lensing time delays enable the measurement of the Hubble constant (H0) independently of other...
The H0LiCOW collaboration inferred via strong gravitational lensing time delays a Hubble constant va...
The H0LiCOW collaboration inferred via strong gravitational lensing time delays a Hubble constant va...
The H0LiCOW collaboration inferred via strong gravitational lensing time delays a Hubble constant va...
Time-delay cosmography of lensed quasars has achieved 2.4% precision on the measurement of the Hubbl...
The H0LiCOWcollaboration inferred via strong gravitational lensing time delays a Hubble constant val...
Time-delay cosmography of lensed quasars has achieved 2.4% precision on the measurement of the Hubbl...
The LCDM model has emerged as the concordance model of cosmology for its ability to explain a variet...
Time delay cosmography uses the arrival time delays between images in strong gravitational lenses to...
Recently, a significant tension has been reported between two measurements of the Hubble constant (H...
Recently, a significant tension has been reported between two measurements of the Hubble constant (H...
Time-delay cosmography of lensed quasars has achieved 2.4% precision on the measurement of the Hubbl...
Time-delay cosmography of lensed quasars has achieved 2.4% precision on the measurement of the Hubbl...
Strong lensing time delays can measure the Hubble constant H0 independently of any other probe. Assu...
Strong lensing time delays can measure the Hubble constant H0 independently of any other probe. Assu...
Strong-lensing time delays enable the measurement of the Hubble constant (H0) independently of other...
The H0LiCOW collaboration inferred via strong gravitational lensing time delays a Hubble constant va...
The H0LiCOW collaboration inferred via strong gravitational lensing time delays a Hubble constant va...
The H0LiCOW collaboration inferred via strong gravitational lensing time delays a Hubble constant va...
Time-delay cosmography of lensed quasars has achieved 2.4% precision on the measurement of the Hubbl...
The H0LiCOWcollaboration inferred via strong gravitational lensing time delays a Hubble constant val...
Time-delay cosmography of lensed quasars has achieved 2.4% precision on the measurement of the Hubbl...
The LCDM model has emerged as the concordance model of cosmology for its ability to explain a variet...
Time delay cosmography uses the arrival time delays between images in strong gravitational lenses to...
Recently, a significant tension has been reported between two measurements of the Hubble constant (H...
Recently, a significant tension has been reported between two measurements of the Hubble constant (H...
Time-delay cosmography of lensed quasars has achieved 2.4% precision on the measurement of the Hubbl...
Time-delay cosmography of lensed quasars has achieved 2.4% precision on the measurement of the Hubbl...