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New Perspectives in Canonical Gravity

New Perspectives in Canonical Gravity PDF Author: Abhay Ashtekar
Publisher:
ISBN: 9780317692808
Category :
Languages : en
Pages :

Book Description


New Perspectives in Canonical Gravity

New Perspectives in Canonical Gravity PDF Author: Abhay Ashtekar
Publisher:
ISBN: 9780317692808
Category :
Languages : en
Pages :

Book Description


Lectures On Non-perturbative Canonical Gravity

Lectures On Non-perturbative Canonical Gravity PDF Author: Abhay Ashtekar
Publisher: World Scientific
ISBN: 9814571091
Category : Science
Languages : en
Pages : 356

Book Description
Notes prepared in Collaboration with Ranjeet S Tate It is now generally recognized that perturbative field theoretical methods that have been highly successful in the quantum description of non-gravitational interactions cannot be used as a means of constructing a quantum theory of gravity. The primary aim of the book is to present an up- to-date account of a non-perturbative, canonical quantization program for gravity. Many of the technical results obtained in the process are of interest also to differential geometry, classical general relativity and QCD. The program as a whole was highlighted in virtually every major conference in gravitational physics over the past three years.

Canonical Gravity: From Classical to Quantum

Canonical Gravity: From Classical to Quantum PDF Author: Jürgen Ehlers
Publisher: Springer
ISBN: 9783662139530
Category : Science
Languages : en
Pages : 372

Book Description
The search for a quantum gravity theory, a theory expected to combine the principles of general relativity and quantum theory, has led to some of the most deepest and most difficult conceptual and mathematical questions of modern physics. The present book, addressing these issues in the framework of recent versions of canonical quantization, is the first to present coherently the background for their understanding. Starting with an analysis of the structure of constrained systems and the problems of their quantization, it discusses the canonical formulation of classical relativity from different perspectives and leads to recent applications of canonical methods to create a quantum theory of gravity. The book aims to make accessible the most fundamental problems and to stimulate work in this field.

Lectures on Non-perturbative Canonical Gravity

Lectures on Non-perturbative Canonical Gravity PDF Author: Abhay Ashtekar
Publisher: World Scientific
ISBN: 9810205740
Category : Science
Languages : en
Pages : 356

Book Description
Notes prepared in Collaboration with Ranjeet S Tate It is now generally recognized that perturbative field theoretical methods that have been highly successful in the quantum description of non-gravitational interactions cannot be used as a means of constructing a quantum theory of gravity. The primary aim of the book is to present an up- to-date account of a non-perturbative, canonical quantization program for gravity. Many of the technical results obtained in the process are of interest also to differential geometry, classical general relativity and QCD. The program as a whole was highlighted in virtually every major conference in gravitational physics over the past three years.

Pushing Gravity

Pushing Gravity PDF Author: Matthew R. Edwards
Publisher: Apeiron
ISBN:
Category : Science
Languages : en
Pages : 332

Book Description


Canonical Gravity

Canonical Gravity PDF Author: Jürgen Ehlers
Publisher: Springer
ISBN: 9783540583394
Category : Electronic books
Languages : en
Pages : 367

Book Description
The search for a quantum gravity theory, a theory expected to combine the principles of general relativity and quantum theory, has led to some of the most deepest and most difficult conceptual and mathematical questions of modern physics. The present book, addressing these issues in the framework of recent versions of canonical quantization, is the first to present coherently the background for their understanding. Starting with an analysis of the structure of constrained systems and the problems of their quantization, it discusses the canonical formulation of classical relativity from different perspectives and leads to recent applications of canonical methods to create a quantum theory of gravity. The book aims to make accessible the most fundamental problems and to stimulate work in this field.

Geometrodynamics of Gauge Fields

Geometrodynamics of Gauge Fields PDF Author: Eckehard W. Mielke
Publisher: Springer
ISBN: 3319297341
Category : Science
Languages : en
Pages : 377

Book Description
This monograph aims to provide a unified, geometrical foundation of gauge theories of elementary particle physics. The underlying geometrical structure is unfolded in a coordinate-free manner via the modern mathematical notions of fibre bundles and exterior forms. Topics such as the dynamics of Yang-Mills theories, instanton solutions and topological invariants are included. By transferring these concepts to local space-time symmetries, generalizations of Einstein's theory of gravity arise in a Riemann-Cartan space with curvature and torsion. It provides the framework in which the (broken) Poincaré gauge theory, the Rainich geometrization of the Einstein-Maxwell system, and higher-dimensional, non-abelian Kaluza-Klein theories are developed. Since the discovery of the Higgs boson, concepts of spontaneous symmetry breaking in gravity have come again into focus, and, in this revised edition, these will be exposed in geometric terms. Quantizing gravity remains an open issue: formulating it as a de Sitter type gauge theory in the spirit of Yang-Mills, some new progress in its topological form is presented. After symmetry breaking, Einstein’s standard general relativity with cosmological constant emerges as a classical background. The geometrical structure of BRST quantization with non-propagating topological ghosts is developed in some detail.

Canonical Gravity and Applications

Canonical Gravity and Applications PDF Author: Martin Bojowald
Publisher: Cambridge University Press
ISBN: 1139494139
Category : Science
Languages : en
Pages : 313

Book Description
Canonical methods are a powerful mathematical tool within the field of gravitational research, both theoretical and experimental, and have contributed to a number of recent developments in physics. Providing mathematical foundations as well as physical applications, this is the first systematic explanation of canonical methods in gravity. The book discusses the mathematical and geometrical notions underlying canonical tools, highlighting their applications in all aspects of gravitational research from advanced mathematical foundations to modern applications in cosmology and black hole physics. The main canonical formulations, including the Arnowitt-Deser-Misner (ADM) formalism and Ashtekar variables, are derived and discussed. Ideal for both graduate students and researchers, this book provides a link between standard introductions to general relativity and advanced expositions of black hole physics, theoretical cosmology or quantum gravity.

Highlights in Gravitation and Cosmology

Highlights in Gravitation and Cosmology PDF Author: B. R. Iyer
Publisher: CUP Archive
ISBN: 9780521361255
Category : Science
Languages : en
Pages : 474

Book Description


Gauge Fields, Knots and Gravity

Gauge Fields, Knots and Gravity PDF Author: John Baez
Publisher: World Scientific Publishing Company
ISBN: 9813103248
Category : Science
Languages : en
Pages : 480

Book Description
This is an introduction to the basic tools of mathematics needed to understand the relation between knot theory and quantum gravity. The book begins with a rapid course on manifolds and differential forms, emphasizing how these provide a proper language for formulating Maxwell's equations on arbitrary spacetimes. The authors then introduce vector bundles, connections and curvature in order to generalize Maxwell theory to the Yang-Mills equations. The relation of gauge theory to the newly discovered knot invariants such as the Jones polynomial is sketched. Riemannian geometry is then introduced in order to describe Einstein's equations of general relativity and show how an attempt to quantize gravity leads to interesting applications of knot theory.