The Einstein-Klein-Gordon Coupled System : : Global Stability of the Minkowski Solution: (AMS-213) / / Benoît Pausader, Alexandru D. Ionescu.

A definitive proof of global nonlinear stability of Minkowski spacetime as a solution of the Einstein-Klein-Gordon equationsThis book provides a definitive proof of global nonlinear stability of Minkowski spacetime as a solution of the Einstein-Klein-Gordon equations of general relativity. Along the...

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Superior document:Title is part of eBook package: De Gruyter EBOOK PACKAGE COMPLETE 2022 English
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Place / Publishing House:Princeton, NJ : : Princeton University Press, , [2022]
©2022
Year of Publication:2022
Language:English
Series:Annals of Mathematics Studies ; 213
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Physical Description:1 online resource (308 p.)
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100 1 |a Ionescu, Alexandru D.,   |e author.  |4 aut  |4 http://id.loc.gov/vocabulary/relators/aut 
245 1 4 |a The Einstein-Klein-Gordon Coupled System :  |b Global Stability of the Minkowski Solution: (AMS-213) /  |c Benoît Pausader, Alexandru D. Ionescu. 
264 1 |a Princeton, NJ :   |b Princeton University Press,   |c [2022] 
264 4 |c ©2022 
300 |a 1 online resource (308 p.) 
336 |a text  |b txt  |2 rdacontent 
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490 0 |a Annals of Mathematics Studies ;  |v 213 
505 0 0 |t Frontmatter --   |t Contents --   |t 1 Introduction --   |t 2 The Main Construction and Outline of the Proof --   |t 3 Preliminary Estimates --   |t 4 The Nonlinearities Nhαβ and Nψ --   |t 5 Improved Energy Estimates --   |t 6 Improved Profile Bounds --   |t 7 The Main Theorems --   |t Bibliography --   |t Index 
506 0 |a restricted access  |u http://purl.org/coar/access_right/c_16ec  |f online access with authorization  |2 star 
520 |a A definitive proof of global nonlinear stability of Minkowski spacetime as a solution of the Einstein-Klein-Gordon equationsThis book provides a definitive proof of global nonlinear stability of Minkowski spacetime as a solution of the Einstein-Klein-Gordon equations of general relativity. Along the way, a novel robust analytical framework is developed, which extends to more general matter models. Alexandru Ionescu and Benoît Pausader prove global regularity at an appropriate level of generality of the initial data, and then prove several important asymptotic properties of the resulting spacetime, such as future geodesic completeness, peeling estimates of the Riemann curvature tensor, conservation laws for the ADM tensor, and Bondi energy identities and inequalities.The book is self-contained, providing complete proofs and precise statements, which develop a refined theory for solutions of quasilinear Klein-Gordon and wave equations, including novel linear and bilinear estimates. Only mild decay assumptions are made on the scalar field and the initial metric is allowed to have nonisotropic decay consistent with the positive mass theorem. The framework incorporates analysis both in physical and Fourier space, and is compatible with previous results on other physical models such as water waves and plasma physics. 
538 |a Mode of access: Internet via World Wide Web. 
546 |a In English. 
588 0 |a Description based on online resource; title from PDF title page (publisher's Web site, viewed 02. Mai 2023) 
650 0 |a General relativity (Physics) 
650 0 |a General relativity (Physics). 
650 0 |a Klein-Gordon equation. 
650 0 |a Mathematical physics. 
650 0 |a Quantum field theory. 
650 7 |a SCIENCE / Physics / Mathematical & Computational.  |2 bisacsh 
653 |a Addition. 
653 |a Algebraic structure. 
653 |a Antiderivative. 
653 |a Approximation. 
653 |a Asymptote. 
653 |a Asymptotic analysis. 
653 |a Bending. 
653 |a Big O notation. 
653 |a Bootstrapping (statistics). 
653 |a Calculation. 
653 |a Cauchy distribution. 
653 |a Coefficient. 
653 |a Combination. 
653 |a Compact space. 
653 |a Complex number. 
653 |a Computation. 
653 |a Conserved quantity. 
653 |a Coordinate system. 
653 |a Coordinate-free. 
653 |a Covariant derivative. 
653 |a Derivative. 
653 |a Differential operator. 
653 |a Dispersion relation. 
653 |a Einstein field equations. 
653 |a Energy functional. 
653 |a Equation. 
653 |a Estimation. 
653 |a Exponential growth. 
653 |a Foliation. 
653 |a Fourier analysis. 
653 |a Fourier transform. 
653 |a Function (mathematics). 
653 |a Function space. 
653 |a General relativity. 
653 |a Geodesic. 
653 |a Geodesics in general relativity. 
653 |a Geographic coordinate system. 
653 |a Geometry. 
653 |a Global analysis. 
653 |a Globality. 
653 |a High frequency. 
653 |a Hyperboloid. 
653 |a Hypersurface. 
653 |a Hypothesis. 
653 |a Implementation. 
653 |a Ingredient. 
653 |a Integration by parts. 
653 |a Interpolation inequality. 
653 |a Klein–Gordon equation. 
653 |a Light cone. 
653 |a Local coordinates. 
653 |a Mathematical optimization. 
653 |a Metric tensor (general relativity). 
653 |a Metric tensor. 
653 |a Minkowski space. 
653 |a Momentum. 
653 |a Monograph. 
653 |a Monotonic function. 
653 |a Nonlinear system. 
653 |a Optics. 
653 |a Parametrization. 
653 |a Partial differential equation. 
653 |a Pointwise. 
653 |a Poisson bracket. 
653 |a Quantity. 
653 |a Remainder. 
653 |a Result. 
653 |a Riemann curvature tensor. 
653 |a Scalar field. 
653 |a Scattering. 
653 |a Schwarzschild metric. 
653 |a Scientific notation. 
653 |a Second fundamental form. 
653 |a Simultaneous equations. 
653 |a Small data. 
653 |a Small number. 
653 |a Sobolev space. 
653 |a Soliton. 
653 |a Space. 
653 |a Stability theory. 
653 |a Stress–energy tensor. 
653 |a Support (mathematics). 
653 |a Symmetrization. 
653 |a Theorem. 
653 |a Time derivative. 
653 |a Timelike Infinity. 
653 |a Trace (linear algebra). 
653 |a Two-dimensional space. 
653 |a Vacuum. 
653 |a Vector field. 
653 |a Very low frequency. 
700 1 |a Pausader, Benoît,   |e author.  |4 aut  |4 http://id.loc.gov/vocabulary/relators/aut 
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