SPACE-TIME SYMMETRY AND QUANTUM YANG-MILLS GRAVITY: How Space-Time Translational Gauge Symmetry Enables the Unification of Gravity with Other Forces
Yang-Mills gravity is a new theory, consistent with experiments, that brings gravity back to the arena of gauge field theory and quantum mechanics in flat space-time. It provides solutions to long-standing difficulties in physics, such as the incompatibility between Einstein's principle of general coordinate invariance and modern schemes for a quantum mechanical description of nature, and Noether's ‘Theorem II’ which showed that the principle of general coordinate invariance in general relativity leads to the failure of the law of conservation of energy. Yang-Mills gravity in flat space-time appears to be more physically coherent than conventional gravity in curved space-time. The problems of quantization of the gravitational field, the operational meaning of space-time coordinates and momenta, and the conservation of energy-momentum are all resolved in Yang-Mills gravity.The aim of this book is to provide a treatment of quantum Yang-Mills gravity, with an emphasis on the ideas and evidence that the gravitational field is the manifestation of space-time translational symmetry in flat space-time, and that there exists a fundamental space-time symmetry framework that can encompass all of physics, including gravity, for all inertial and non-inertial frames of reference.
"1115149753"
SPACE-TIME SYMMETRY AND QUANTUM YANG-MILLS GRAVITY: How Space-Time Translational Gauge Symmetry Enables the Unification of Gravity with Other Forces
Yang-Mills gravity is a new theory, consistent with experiments, that brings gravity back to the arena of gauge field theory and quantum mechanics in flat space-time. It provides solutions to long-standing difficulties in physics, such as the incompatibility between Einstein's principle of general coordinate invariance and modern schemes for a quantum mechanical description of nature, and Noether's ‘Theorem II’ which showed that the principle of general coordinate invariance in general relativity leads to the failure of the law of conservation of energy. Yang-Mills gravity in flat space-time appears to be more physically coherent than conventional gravity in curved space-time. The problems of quantization of the gravitational field, the operational meaning of space-time coordinates and momenta, and the conservation of energy-momentum are all resolved in Yang-Mills gravity.The aim of this book is to provide a treatment of quantum Yang-Mills gravity, with an emphasis on the ideas and evidence that the gravitational field is the manifestation of space-time translational symmetry in flat space-time, and that there exists a fundamental space-time symmetry framework that can encompass all of physics, including gravity, for all inertial and non-inertial frames of reference.
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SPACE-TIME SYMMETRY AND QUANTUM YANG-MILLS GRAVITY: How Space-Time Translational Gauge Symmetry Enables the Unification of Gravity with Other Forces

SPACE-TIME SYMMETRY AND QUANTUM YANG-MILLS GRAVITY: How Space-Time Translational Gauge Symmetry Enables the Unification of Gravity with Other Forces

SPACE-TIME SYMMETRY AND QUANTUM YANG-MILLS GRAVITY: How Space-Time Translational Gauge Symmetry Enables the Unification of Gravity with Other Forces

SPACE-TIME SYMMETRY AND QUANTUM YANG-MILLS GRAVITY: How Space-Time Translational Gauge Symmetry Enables the Unification of Gravity with Other Forces

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Overview

Yang-Mills gravity is a new theory, consistent with experiments, that brings gravity back to the arena of gauge field theory and quantum mechanics in flat space-time. It provides solutions to long-standing difficulties in physics, such as the incompatibility between Einstein's principle of general coordinate invariance and modern schemes for a quantum mechanical description of nature, and Noether's ‘Theorem II’ which showed that the principle of general coordinate invariance in general relativity leads to the failure of the law of conservation of energy. Yang-Mills gravity in flat space-time appears to be more physically coherent than conventional gravity in curved space-time. The problems of quantization of the gravitational field, the operational meaning of space-time coordinates and momenta, and the conservation of energy-momentum are all resolved in Yang-Mills gravity.The aim of this book is to provide a treatment of quantum Yang-Mills gravity, with an emphasis on the ideas and evidence that the gravitational field is the manifestation of space-time translational symmetry in flat space-time, and that there exists a fundamental space-time symmetry framework that can encompass all of physics, including gravity, for all inertial and non-inertial frames of reference.

Product Details

ISBN-13: 9789814436205
Publisher: World Scientific Publishing Company, Incorporated
Publication date: 07/29/2013
Series: ADVANCED SERIES ON THEORETICAL PHYSICAL SCIENCE , #11
Sold by: Barnes & Noble
Format: eBook
Pages: 288
File size: 9 MB
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