Description

Book Synopsis
Over the last decade the physics of black holes has been revolutionized by developments that grew out of Jacob Bekenstein's realization that black holes have entropy. Stephen Hawking raised profound issues concerning the loss of information in black hole evaporation and the consistency of quantum mechanics in a world with gravity. For two decades these questions puzzled theoretical physicists and eventually led to a revolution in the way we think about space, time, matter and information. This revolution has culminated in a remarkable principle called “The Holographic Principle”, which is now a major focus of attention in gravitational research, quantum field theory and elementary particle physics. Leonard Susskind, one of the co-inventors of the Holographic Principle as well as one of the founders of String theory, develops and explains these concepts.

Table of Contents
Black Holes and Quantum Mechanics:; The Schwarzschild Black Hole; Scalar Wave Equation in a Schwarzschild Background; Quantum Fields in Rindler Space; Entropy of the Free Quantum Field in Rindler Space; Thermodynamics of Black Holes; Charged Black Holes; The Stretched Horizon; The Laws of Nature; The Puzzle of Information Conservation in Black Hole Environments; Horizons and the UV/IR Connection; Entropy Bounds and Holography:; Entropy Bounds; The Holographic Principle and Anti de Sitter Space; Black Holes in a Box; Black Holes and Strings:; Strings; Entropy of Strings and Black Holes

Introduction To Black Holes, Information And The

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    A Hardback by Leonard Susskind, James Lindesay

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      View other formats and editions of Introduction To Black Holes, Information And The by Leonard Susskind

      Publisher: World Scientific Publishing Co Pte Ltd
      Publication Date: 23/12/2004
      ISBN13: 9789812560834, 978-9812560834
      ISBN10: 9812560831

      Description

      Book Synopsis
      Over the last decade the physics of black holes has been revolutionized by developments that grew out of Jacob Bekenstein's realization that black holes have entropy. Stephen Hawking raised profound issues concerning the loss of information in black hole evaporation and the consistency of quantum mechanics in a world with gravity. For two decades these questions puzzled theoretical physicists and eventually led to a revolution in the way we think about space, time, matter and information. This revolution has culminated in a remarkable principle called “The Holographic Principle”, which is now a major focus of attention in gravitational research, quantum field theory and elementary particle physics. Leonard Susskind, one of the co-inventors of the Holographic Principle as well as one of the founders of String theory, develops and explains these concepts.

      Table of Contents
      Black Holes and Quantum Mechanics:; The Schwarzschild Black Hole; Scalar Wave Equation in a Schwarzschild Background; Quantum Fields in Rindler Space; Entropy of the Free Quantum Field in Rindler Space; Thermodynamics of Black Holes; Charged Black Holes; The Stretched Horizon; The Laws of Nature; The Puzzle of Information Conservation in Black Hole Environments; Horizons and the UV/IR Connection; Entropy Bounds and Holography:; Entropy Bounds; The Holographic Principle and Anti de Sitter Space; Black Holes in a Box; Black Holes and Strings:; Strings; Entropy of Strings and Black Holes

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