Approaches to Numerical Relativity

Approaches to Numerical Relativity PDF Author: Ray D'Inverno
Publisher:
ISBN:
Category :
Languages : en
Pages : 378

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Book Description

Approaches to Numerical Relativity

Approaches to Numerical Relativity PDF Author: Ray D'Inverno
Publisher:
ISBN:
Category :
Languages : en
Pages : 378

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Book Description


Introduction to 3+1 Numerical Relativity

Introduction to 3+1 Numerical Relativity PDF Author: Miguel Alcubierre
Publisher: OUP Oxford
ISBN: 0191548294
Category : Science
Languages : en
Pages : 464

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Book Description
This book introduces the modern field of 3+1 numerical relativity. The book has been written in a way as to be as self-contained as possible, and only assumes a basic knowledge of special relativity. Starting from a brief introduction to general relativity, it discusses the different concepts and tools necessary for the fully consistent numerical simulation of relativistic astrophysical systems, with strong and dynamical gravitational fields. Among the topics discussed in detail are the following: the initial data problem, hyperbolic reductions of the field equations, gauge conditions, the evolution of black hole space-times, relativistic hydrodynamics, gravitational wave extraction and numerical methods. There is also a final chapter with examples of some simple numerical space-times. The book is aimed at both graduate students and researchers in physics and astrophysics, and at those interested in relativistic astrophysics.

Numerical Relativity

Numerical Relativity PDF Author: Thomas W. Baumgarte
Publisher: Cambridge University Press
ISBN: 1139643177
Category : Science
Languages : en
Pages : 717

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Book Description
Aimed at students and researchers entering the field, this pedagogical introduction to numerical relativity will also interest scientists seeking a broad survey of its challenges and achievements. Assuming only a basic knowledge of classical general relativity, the book develops the mathematical formalism from first principles, and then highlights some of the pioneering simulations involving black holes and neutron stars, gravitational collapse and gravitational waves. The book contains 300 exercises to help readers master new material as it is presented. Numerous illustrations, many in color, assist in visualizing new geometric concepts and highlighting the results of computer simulations. Summary boxes encapsulate some of the most important results for quick reference. Applications covered include calculations of coalescing binary black holes and binary neutron stars, rotating stars, colliding star clusters, gravitational and magnetorotational collapse, critical phenomena, the generation of gravitational waves, and other topics of current physical and astrophysical significance.

Numerical Relativity: Starting from Scratch

Numerical Relativity: Starting from Scratch PDF Author: Thomas W. Baumgarte
Publisher: Cambridge University Press
ISBN: 1108844111
Category : Mathematics
Languages : en
Pages : 235

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Book Description
A pedagogical and accessible introduction to numerical relativity, the key tool to model gravitational waves and black hole mergers.

Elements of Numerical Relativity

Elements of Numerical Relativity PDF Author: Carles Bona
Publisher: Springer
ISBN: 9783540810384
Category : Science
Languages : en
Pages : 152

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Book Description
Spurred by the current development of numerous large-scale projects for detecting gravitational radiation, with the aim to open a completely new window to the observable Universe, numerical relativity has become a major field of research over the past years. Indeed, numerical relativity is the standard approach when studying potential sources of gravitational waves, where strong fields and relativistic velocities are part of any physical scenario. This book can be considered a primer for both graduate students and non-specialist researchers wishing to enter the field. Starting from the most basic insights and aspects of numerical relativity, Elements of Numerical Relativity develops coherent guidelines for the reliable and convenient selection of each of the following key aspects: evolution formalism, gauge, initial and boundary conditions as well as various numerical algorithms. The tests and applications proposed in this book can be performed on a standard PC.

Numerical Relativity

Numerical Relativity PDF Author: Masaru Shibata
Publisher: World Scientific
ISBN: 981469973X
Category : Science
Languages : en
Pages : 844

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Book Description
"This book is composed of two parts: First part describes basics in numerical relativity, that is, the formulations and methods for a solution of Einstein's equation and general relativistic matter field equations. This part will be helpful for beginners of numerical relativity who would like to understand the content of numerical relativity and its background. The second part focuses on the application of numerical relativity. A wide variety of scientific numerical results are introduced focusing in particular on the merger of binary neutron stars and black holes."--

Frontiers in Numerical Relativity

Frontiers in Numerical Relativity PDF Author: Charles R. Evans
Publisher: Cambridge University Press
ISBN: 0521366666
Category : Mathematics
Languages : en
Pages : 451

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Book Description
This 1989 text will be of value to those who wish to understand developments in computer studies of general relativity at the time of publication.

3+1 Formalism in General Relativity

3+1 Formalism in General Relativity PDF Author: Éric Gourgoulhon
Publisher: Springer
ISBN: 3642245250
Category : Science
Languages : en
Pages : 304

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Book Description
This graduate-level, course-based text is devoted to the 3+1 formalism of general relativity, which also constitutes the theoretical foundations of numerical relativity. The book starts by establishing the mathematical background (differential geometry, hypersurfaces embedded in space-time, foliation of space-time by a family of space-like hypersurfaces), and then turns to the 3+1 decomposition of the Einstein equations, giving rise to the Cauchy problem with constraints, which constitutes the core of 3+1 formalism. The ADM Hamiltonian formulation of general relativity is also introduced at this stage. Finally, the decomposition of the matter and electromagnetic field equations is presented, focusing on the astrophysically relevant cases of a perfect fluid and a perfect conductor (ideal magnetohydrodynamics). The second part of the book introduces more advanced topics: the conformal transformation of the 3-metric on each hypersurface and the corresponding rewriting of the 3+1 Einstein equations, the Isenberg-Wilson-Mathews approximation to general relativity, global quantities associated with asymptotic flatness (ADM mass, linear and angular momentum) and with symmetries (Komar mass and angular momentum). In the last part, the initial data problem is studied, the choice of spacetime coordinates within the 3+1 framework is discussed and various schemes for the time integration of the 3+1 Einstein equations are reviewed. The prerequisites are those of a basic general relativity course with calculations and derivations presented in detail, making this text complete and self-contained. Numerical techniques are not covered in this book.

Numerical Relativity

Numerical Relativity PDF Author: Thomas W. Baumgarte
Publisher: Cambridge University Press
ISBN: 052151407X
Category : Science
Languages : en
Pages : 717

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Book Description
Pedagogical introduction to numerical relativity for students and researchers entering the field, and interested scientists.

Analytical and Numerical Approaches to Mathematical Relativity

Analytical and Numerical Approaches to Mathematical Relativity PDF Author: Jörg Frauendiener
Publisher: Springer
ISBN: 9783540819288
Category : Science
Languages : en
Pages : 281

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Book Description
General relativity ranks among the most accurately tested fundamental theories in all of physics. Deficiencies in mathematical and conceptual understanding still exist, hampering further progress. This book collects surveys by experts in mathematical relativity writing about the current status of, and problems in, their fields. There are four contributions for each of the following mathematical areas: differential geometry and differential topology, analytical methods and differential equations, and numerical methods.