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Setting Limits on Supersymmetry Using Simplified Models
Published on: November 15, 2013
Necessity of dark matter in modified Newtonian dynamics within galactic scales
Ignacio Ferreras1, Mairi Sakellariadou, Muhammad Furqaan Yusaf
1Department of Physics, King's College London, Strand, London, United Kingdom. ferreras@star.ucl.ac.uk
Abstract:
To test modified Newtonian dynamics (MOND) on galactic scales, we study six strong gravitational lensing early-type galaxies from the CASTLES sample. Comparing the total mass (from lensing) with the stellar mass content (from a comparison of photometry and stellar population synthesis), we conclude that strong gravitational lensing on galactic scales requires a significant amount of dark matter, even within MOND. On such scales a 2 eV neutrino cannot explain the excess of matter in contrast with recent claims to explain the lensing data of the bullet cluster. The presence of dark matter is detected in regions with a higher acceleration than the characteristic MOND scale of approximately 10(-10) m/s(2). This is a serious challenge to MOND unless lensing is qualitatively different [possibly to be developed within a covariant, such as Tensor-Vector-Scalar (TeVeS), theory].
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