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Introduction to Quantum Information Aspects of AdS/CFT - Lecture 2

Offered By: International Centre for Theoretical Sciences via YouTube

Tags

Quantum Gravity Courses Black Holes Courses Holography Courses Quantum Error Correction Courses Quantum Information Theory Courses Quantum Field Theory Courses Entanglement Entropy Courses Tensor Networks Courses AdS/CFT Correspondence Courses

Course Description

Overview

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Delve into the second lecture of a series on quantum information aspects of AdS/CFT correspondence delivered by Matthew Headrick. Explore the intersection of quantum gravity, quantum information theory, and many-body physics in this 1 hour 32 minute presentation from the International Centre for Theoretical Sciences. Gain insights into the emergent nature of spacetime and gravity as described by the dynamics of quantum information in microscopic quantum systems. Examine how tools from quantum information theory have advanced understanding of quantum gravity problems, including the black hole information paradox. Discover the impact of black hole physics on information scrambling in chaotic quantum systems. Learn about the application of quantum information theory to quantum field theories and many-body dynamics, including novel proofs of QFT constraints and characterizations of quantum matter phases. Part of a comprehensive program bringing together experts to discuss themes such as quantum error correction, complexity growth, multiparty entanglement in holography, gravitational constraints on quantum information localization, and tensor network models in condensed matter and quantum gravity.

Syllabus

Introduction to Quantum Information Aspects of AdS/CFT (Lecture 2) by Matthew Headrick


Taught by

International Centre for Theoretical Sciences

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