Gravitational lens flux-ratio anomalies provide a powerful technique for measuring dark matter substructure in distant galaxies. However, before using these flux-ratio anomalies to test galaxy formation models, it is imperative to ascertain that the given anomalies are indeed due to the presence of dark matter substructure and not due to some other component of the lensing galaxy halo or to propagation effects. Here we present the case of CLASS B1555+375, which has a strong radio-wavelength flux-ratio anomaly. Our high-resolution near-infrared Keck II adaptive optics imaging and archival Hubble Space Telescope data reveal the lensing galaxy in this system to have a clear edge-on disc component that crosses directly over the pair of images t...
Whereas the predictions from the phenomenological dark-matter models are practically indistinguishab...
The flux anomalies in four-image gravitational lenses can be interpreted as evidence for the dark ma...
peer reviewedDiscrepancies between the observed and model-predicted radio flux ratios are seen in a ...
Gravitational lens flux-ratio anomalies provide a powerful technique for measuring dark matter subst...
International audienceGravitational lens flux-ratio anomalies provide a powerful technique for measu...
Flux-ratio anomalies in quasar lenses can be attributed to dark matter substructure surrounding the ...
The existence of flux ratio anomalies between fold and cusp images in galaxy-scale strong-lens syste...
International audienceFlux-ratio anomalies in quasar lenses can be attributed to dark matter substru...
The existence of flux-ratio anomalies between fold and cusp images in galaxy-scale strong-lens syste...
The existence of flux ratio anomalies between fold and cusp images in galaxy-scale strong-lens syste...
The flux ratios in the multiple images of gravitationally lensed quasars can provide evidence for da...
Discrepancies between the observed and model-predicted radio flux ratios are seen in a number of qua...
The flux-ratio anomalies observed in multiply lensed quasar images are most plausibly explained as t...
The existence of flux ratio anomalies between fold and cusp images in galaxy-scale strong-lens syste...
Whereas the predictions from the phenomenological dark-matter models are practically indistinguishab...
The flux anomalies in four-image gravitational lenses can be interpreted as evidence for the dark ma...
peer reviewedDiscrepancies between the observed and model-predicted radio flux ratios are seen in a ...
Gravitational lens flux-ratio anomalies provide a powerful technique for measuring dark matter subst...
International audienceGravitational lens flux-ratio anomalies provide a powerful technique for measu...
Flux-ratio anomalies in quasar lenses can be attributed to dark matter substructure surrounding the ...
The existence of flux ratio anomalies between fold and cusp images in galaxy-scale strong-lens syste...
International audienceFlux-ratio anomalies in quasar lenses can be attributed to dark matter substru...
The existence of flux-ratio anomalies between fold and cusp images in galaxy-scale strong-lens syste...
The existence of flux ratio anomalies between fold and cusp images in galaxy-scale strong-lens syste...
The flux ratios in the multiple images of gravitationally lensed quasars can provide evidence for da...
Discrepancies between the observed and model-predicted radio flux ratios are seen in a number of qua...
The flux-ratio anomalies observed in multiply lensed quasar images are most plausibly explained as t...
The existence of flux ratio anomalies between fold and cusp images in galaxy-scale strong-lens syste...
Whereas the predictions from the phenomenological dark-matter models are practically indistinguishab...
The flux anomalies in four-image gravitational lenses can be interpreted as evidence for the dark ma...
peer reviewedDiscrepancies between the observed and model-predicted radio flux ratios are seen in a ...