Area of research
Astronomy and Astrophysics · Instrumentation
Research interest
Research focused on Astrophysics and Gravitational lens, with related work in Lens (geology), Galaxy, Cosmology. Notable publications include 'A SHARP view of H0LiCOW: H0 from three time-delay gravitational lens systems with adaptive optics imaging', 'H0LiCOW – IV. Lens mass model of HE 0435−1223 and blind measurement of its time-delay distance for cosmology', and 'Quantitative “Hot-Spot” Imaging of Transplanted Stem Cells Using Superparamagnetic Tracers and Magnetic Particle Imaging'.
Cosmology with supernova Encore in the strong lensing cluster MACS J0138–2155
Cosmology with supernova Encore in the strong lensing cluster MACS J0138−2155
A SHARP view of H0LiCOW: H0 from three time-delay gravitational lens systems with adaptive optics imaging
H0LiCOW XII. Lens mass model of WFI2033 − 4723 and blind measurement of its time-delay distance and H0
MACS J0416.1–2403: Impact of line-of-sight structures on strong gravitational lensing modelling of galaxy clusters
Precise strong lensing mass profile of the CLASH galaxy cluster MACS 2129
H0LiCOW – IV. Lens mass model of HE 0435−1223 and blind measurement of its time-delay distance for cosmology
THE STORY OF SUPERNOVA “REFSDAL” TOLD BY MUSE*
SHARP – III. First use of adaptive-optics imaging to constrain cosmology with gravitational lens time delays
Quantitative “Hot-Spot” Imaging of Transplanted Stem Cells Using Superparamagnetic Tracers and Magnetic Particle Imaging
Constraining the galaxy mass content in the core of A383 using velocity dispersion measurements for individual cluster members