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      Lectures on Gravity and Entanglement

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          Abstract

          The AdS/CFT correspondence provides quantum theories of gravity in which spacetime and gravitational physics emerge from ordinary non-gravitational quantum systems with many degrees of freedom. Recent work in this context has uncovered fascinating connections between quantum information theory and quantum gravity, suggesting that spacetime geometry is directly related to the entanglement structure of the underlying quantum mechanical degrees of freedom and that aspects of spacetime dynamics (gravitation) can be understood from basic quantum information theoretic constraints. In these notes, we provide an elementary introduction to these developments, suitable for readers with some background in general relativity and quantum field theory. The notes are based on lectures given at the CERN Spring School 2014, the Jerusalem Winter School 2014, the TASI Summer School 2015, and the Trieste Spring School 2015.

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          Journal
          2016-08-31
          Article
          1609.00026
          9206e6c6-a0b2-4df5-b1b8-436606f6c93d

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          75 pages, beta version: please e-mail corrections
          hep-th gr-qc quant-ph

          Quantum physics & Field theory,General relativity & Quantum cosmology,High energy & Particle physics

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