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YRS and XV ICMP

2.0.11 Cauchy Problem in General Relativity

Igor Rodnianski

Princeton irod@Math.Princeton.edu

The talk will describe some of the classical and recent results on the Cauchy problem in General Relativity. Special focus will be on the problems concerning existence of a Cauchy development, break-down criteria for general large data solutions, stability questions, and connections to the nonlinear hyperbolic equations.

2.0.12Survey of Recent Mathematical Progress in the Understanding of Critical 2d Systems

Wendelin Werner

Université Paris-Sud wendelin.werner@math.u-psud.fr

In this talk, I will try to survey some aspects of the recent progress in the mathematical understanding of random and conformally invariant two-dimensional structures. I will in particular describe work by or in collaboration with Greg Lawler, Oded Schramm, Scott Sheffield, Stas Smirnov, and I will mention and define SLE processes, Brownian loop-soups, Gaussian Free Fields. These conformally invariant structures are supposed to (and in some cases it is proved) to appear as scaling limits of two-dimensional critical models from statistical physics, and to be therefore rather directly related to conformal field theory.

2.0.13 Random Methods in Quantum Information Theory

Andreas Winter

University of Bristol a.j.winter@bristol.ac.uk

The probabilistic method—or “random coding” in information theory—is the most powerful tool to construct efficient information processing protocols. I will review the status of random coding in quantum information theory in the light of recent progress in understanding random channel codes and entanglement distillation procedures. Applications include an operational interpretation of quantum conditional entropy (“negative information”), an approach to the foundations of statistical mechanics based on entanglement and the existence of exotic, highly entangled yet barely correlated states.

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