Area of research
Astronomy and Astrophysics · Nuclear and High Energy Physics
Research interest
Research interests include Black Holes and Theoretical Physics, Geometric Analysis and Curvature Flows, Cosmology and Gravitation Theories, and Advanced Differential Geometry Research.
Initial Data Rigidity Results
Positive mass theorems for asymptotically hyperbolic Riemannian manifolds with boundary
Rigidity of outermost MOTS: the initial data version
Timelike Completeness as an Obstruction to C 0-Extensions
Hausdorff Closed Limits and Rigidity in Lorentzian Geometry
Topology and Singularities in Cosmological Spacetimes Obeying the Null Energy Condition
On static Poincaré-Einstein metrics
Cosmological singularities in Bakry–Émery spacetimes
Achronal Limits, Lorentzian Spheres, and Splitting
Topological Censorship for Kaluza–Klein Space-Times
2012cited by 32position: middle
Constraints on the topology of higher-dimensional black holes
Differential Geometric Problems in Mathematical Relativity
Differential geometric problems in mathematical relativity
Conference and Mittag-Leffler Institute Program on Geometry, Analysis and General Relativity
Metric Differential Geometry and Mathematical Gravity
Newton Institute Program on Global Problems in Mathematical Relativity
Metric Differential Geometry and Mathematical Gravity
Metric Differential Geometry and Mathematical Gravity
Research in Lorentzian Geometry and Mathematical Relativity
Mathematical Sciences: Research in Riemannian and LorentzianGeometry
Mathematical Sciences: Research in Pseudo-Riemannian Geometry and Mathematical Relativity
Mathematical Sciences: Research in Pseudo-Riemannian Geometry