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Assistant Professor of Astronomy
Office Information:
University of Michigan Department of Astronomy
1085 S. University
Ann Arbor, MI 48109
phone: 734.936.2079
Dark Matter & Energy; Galaxies & Galaxy Clusters; Michigan Institute for Research in Astrophysics
Keren Sharon’s research centers on strong gravitational lensing -- a phenomenon in which the gravitational field of a massive structure bends light from objects behind it, allowing it to serve as a natural telescope. Her group studies the massive structures themselves, analyzing the gravitational lensing signal from groups and clusters of galaxies to model their mass distribution. Sharon’s team also uses the exceptional magnification provided by these lensing clusters to probe the physical properties of their background galaxies. This technique has allowed them to examine distant galaxies with unprecedented resolution and detail.
Data Sources
Optical (Hubble Space Telescope) and spectroscopic (Magellan, Gemini, MMT).
Notable Results
Her group’s discovery of the largest multiplicity high-redshift lensed quasar was reported in 2013. They were awarded seven orbits of the Hubble Space Telescope (HST) in 2014 to observe this unique system. The group also recently completed a 107-orbit HST program to observe a sample of lensing clusters; results are in preparation. Sharon’s team was selected as one of five groups to provide preliminary lens models for the Hubble Frontier Fields; the models were computed by her student, Traci Johnson.
Background
BS & PhD, Tel Aviv University/Israel; Kavli Postdoctoral Fellow, Kavli Institute for Cosmological Physics/University of Chicago; University of Michigan's President's Postdoctoral Fellow, U-M.
Publications
For articles that include this author, use this ADS search.
Keren Sharon’s research centers on strong gravitational lensing -- a phenomenon in which the gravitational field of a massive structure bends light from objects behind it, allowing it to serve as a natural telescope. Her group studies the massive structures themselves, analyzing the gravitational lensing signal from groups and clusters of galaxies to model their mass distribution. Sharon’s team also uses the exceptional magnification provided by these lensing clusters to probe the physical properties of their background galaxies. This technique has allowed them to examine distant galaxies with unprecedented resolution and detail.
Data Sources
Optical (Hubble Space Telescope) and spectroscopic (Magellan, Gemini, MMT).
Notable Results
Her group’s discovery of the largest multiplicity high-redshift lensed quasar was reported in 2013. They were awarded seven orbits of the Hubble Space Telescope (HST) in 2014 to observe this unique system. The group also recently completed a 107-orbit HST program to observe a sample of lensing clusters; results are in preparation. Sharon’s team was selected as one of five groups to provide preliminary lens models for the Hubble Frontier Fields; the models were computed by her student, Traci Johnson.
Background
BS & PhD, Tel Aviv University/Israel; Kavli Postdoctoral Fellow, Kavli Institute for Cosmological Physics/University of Chicago; University of Michigan's President's Postdoctoral Fellow, U-M.
Background Mmt Keren Foto
Publications
Background Mmt Keren Ppt
For articles that include this author, use this ADS search.