Quantum Gravity

Quantum Gravity

Einband:
Fester Einband
EAN:
9780199585205
Untertitel:
International Series of Monographs on Physics 155
Autor:
Claus Kiefer
Herausgeber:
Oxford University Press
Auflage:
3rd ed
Anzahl Seiten:
393
Erscheinungsdatum:
30.04.2012
ISBN:
0199585202

Zusatztext The authors own work on the quantisation of black holes and collapsing dust shells is extensively presented. Overall the presentation is balanced and without any exaggerated claims for any one particular approach Informationen zum Autor Claus Kiefer has been a Professor at the Institute for Theoretical Physics, University of Cologne, Germany since 2001. Klappentext Quantum theory and Einstein's theory of relativity are at the centre of modern theoretical physics, yet, the consistent unification of both theories is still elusive. This book offers an up-to-date introduction into the attempts to construct a unified theory of "quantum gravity". Zusammenfassung The search for a quantum theory of the gravitational field is one of the great open problems in theoretical physics. This book presents a self-contained discussion of the concepts, methods and applications that can be expected in such a theory. The two main approaches to its construction -- the direct quantisation of Einstein's general theory of relativity and string theory -- are covered. Whereas the first attempts to construct a viable theory for the gravitational field alone, string theory assumes that a quantum theory of gravity will be achieved only through a unification of all the interactions. However, both employ the general method of quantization of constrained systems, which is described together with illustrative examples relevant for quantum gravity. There is a detailed presentation of the main approaches employed in quantum general relativity: path-integral quantization, the background-field method and canonical quantum gravity in the metric, connection and loop formulations. The discussion of string theory centres around its quantum-gravitational aspects and the comparison with quantum general relativity. Physical applications discussed at length include the quantization of black holes, quantum cosmology, the indications of a discrete structure of spacetime, and the origin of irreversibility.This third edition contains new chapters or sections on quantum gravity phenomenology, Horava-Lifshitz quantum gravity, analogue gravity, the holographic principle, and affine quantum gravity. It will present updates on loop quantum cosmology, the LTB model, asymptotic safety, and various discrete approaches. The third edition also contains pedagogical extensions throughout the text.This book will be of interest to researchers and students working in relativity and gravitation, cosmology, quantum field theory and related topics. It will also be of interest to mathematicians and philosophers of science. Inhaltsverzeichnis 1: Why quantum gravity? 2: Covariant approaches to quantum gravity 3: Parametrized and relational systems 4: Hamiltonian formulation of general relativity 5: Quantum geometrodynamics 6: Quantum gravity with connections and loops 7: Quantization of black holes 8: Quantum cosmology 9: String theory 10: Phenomenology, decoherence, and the arrow of time ...

Autorentext
Claus Kiefer has been a Professor at the Institute for Theoretical Physics, University of Cologne, Germany since 2001.




Klappentext
Quantum theory and Einstein's theory of relativity are at the centre of modern theoretical physics, yet, the consistent unification of both theories is still elusive. This book offers an up-to-date introduction into the attempts to construct a unified theory of "quantum gravity".


Zusammenfassung
The search for a quantum theory of the gravitational field is one of the great open problems in theoretical physics. This book presents a self-contained discussion of the concepts, methods and applications that can be expected in such a theory. The two main approaches to its construction -- the direct quantisation of Einstein's general theory of relativity and string theory -- are covered. Whereas the first attempts to construct a viable theory for the gravitational field alone, string theory assumes that a quantum theory of gravity will be achieved only through a unification of all the interactions. However, both employ the general method of quantization of constrained systems, which is described together with illustrative examples relevant for quantum gravity. There is a detailed presentation of the main approaches employed in quantum general relativity: path-integral quantization, the background-field method and canonical quantum gravity in the metric, connection and loop formulations. The discussion of string theory centres around its quantum-gravitational aspects and the comparison with quantum general relativity. Physical applications discussed at length include the quantization of black holes, quantum cosmology, the indications of a discrete structure of spacetime, and the origin of irreversibility. This third edition contains new chapters or sections on quantum gravity phenomenology, Horava-Lifshitz quantum gravity, analogue gravity, the holographic principle, and affine quantum gravity. It will present updates on loop quantum cosmology, the LTB model, asymptotic safety, and various discrete approaches. The third edition also contains pedagogical extensions throughout the text. This book will be of interest to researchers and students working in relativity and gravitation, cosmology, quantum field theory and related topics. It will also be of interest to mathematicians and philosophers of science.

Inhalt
1: Why quantum gravity?
2: Covariant approaches to quantum gravity
3: Parametrized and relational systems
4: Hamiltonian formulation of general relativity
5: Quantum geometrodynamics
6: Quantum gravity with connections and loops
7: Quantization of black holes
8: Quantum cosmology
9: String theory
10: Phenomenology, decoherence, and the arrow of time


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