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The description of Nature in physics currently falls into two parts: the microscopic and the macroscopic. The microscopic world (molecules, atoms, particles) is described by quantum theory, whereas the macroscopic world (planets, stars, galaxies, universe) is ruled by a classical interaction - gravity - that is described by Einstein's theory of general relativity. This book describes in detail the attempts to unify quantum theory and relativity, which are essential to understanding the origin of the Universe and the final fate of black holes.The construction of a consistent quantum theory is among the most important open problems in fundamental physics. This book describes the motivation for constructing such a theory and presents the main approaches. These approaches include covariant quantization, canonical quantization (metric and loop approaches), and string theory. The book also covers the main applications, which include black holes and cosmology.This new edition includes updated content throughout, as well as further explorations of the holographic principle, unimodular gravity, quantum-gravitational correction terms, and possible observations, as these are topics that have experienced important developments since the last edition.
This text investigates the fundamental challenge of unifying quantum theory and general relativity into a consistent framework of quantum gravity. Claus Kiefer, a prominent theoretical physicist, synthesizes decades of research to address the incompatibility between the microscopic description of particles and the macroscopic description of gravity. The book provides a rigorous mathematical and conceptual overview of the primary theoretical approaches currently under development in the field. By examining the intersection of these two pillars of modern physics, the author outlines the necessary conditions for a theory of everything.
What You Will Find
Experts recognize this monograph as a comprehensive and technically demanding resource for graduate students and researchers in theoretical physics. Readers frequently note the academic density of the prose, which requires a strong background in general relativity and quantum field theory to fully grasp the presented arguments.
Page Count:
448
Publication Date:
2025-08-31
Publisher:
Oxford University Press
ISBN-10:
0198842139
ISBN-13:
9780198842132
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