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Strong field gravitational lensings are dramatically disparate from those in the weak field by representing relativistic images due to light winds one to infinity loops around a lens before escaping.
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K. Sarkar and A. Bhadra, Strong field gravitational lensing in scalar tensor theories
2006
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2007
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2007
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2007
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2008
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2013
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2013
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2013
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Z. Horváth and L. Á. Gergely, Black hole tidal charge constrained by strong gravitational lensing
2013
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A. B. Kamruddin and J. Dexter, A geometric crescent model for black hole images
2013
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C. A. R. Herdeiro and E. Radu, Kerr Black Holes with Scalar Hair
2014
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P. K. F. Kuhfittig, Gravitational lensing of wormholes in the galactic halo region
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2014
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J. Man and H. Cheng, The time delay in strong gravitational lensing with Gauss-Bonnet correction
2014
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J. Sadeghi and H. Vaez, Strong gravitational lensing with Gauss-Bonnet correction
2014
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2014
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T. P. Sotiriou and S.-Y. Zhou, Black Hole Hair in Generalized Scalar-Tensor Gravity
2014
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2014
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2014
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A. F. Zakharov, Constraints on a charge in the Reissner-Nordström metric for the black hole at the Galactic Center
2014
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2015
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P. K. F. Kuhfittig, Gravitational lensing of wormholes in noncommutative geometry
2015
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H. Sotani and U. Miyamoto, Strong gravitational lensing by an electrically charged black hole in eddington-inspired born-infeld gravity
2015
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2015
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2015
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S.-W. Wei, K. Yang, and Y.-X. Liu, Erratum: Erratum to: Black hole solution and strong gravitational lensing in Eddington-inspired Born-Infeld gravity
2015
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M. Hohmann, Parametrized post-Newtonian limit of Horndeski’s gravity theory
2015
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2015
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E. Babichev, C. Charmousis, and M. Hassaine, Charged Galileon black holes
2015
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2015
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