Das A. The general theory of relativity: a mathematical exposition (New York, 2012). - ОГЛАВЛЕНИЕ / CONTENTS
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ОбложкаDas A. The general theory of relativity: a mathematical exposition / A.Das, A.DeBenedictis. - New York: Springer, 2012. - xxvi, 678 p.: ill. - Ref.: p.661-668. - Ind.: p.669-678. - ISBN 978-1-4614-3657-7
 

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Оглавление / Contents
 
1  Tensor Analysis on Differentiable Manifolds .................. 1
   1.1  Differentiable Manifolds ................................ 1
   1.2  Tensor Fields Over Differentiable Manifolds ............ 16
   1.3  Riemannian and Pseudo-Riemannian Manifolds ............. 40
   1.4  Extrinsic Curvature .................................... 88
2  The Pseudo-Riemannian Space-Time Manifold M4 ............... 105
   2.1  Review of the Special Theory of Relativity ............ 105
   2.2  Curved Space-Time and Gravitation ..................... 136
   2.3  General Properties of Tij ............................. 174
   2.4  Solution Strategies, Classification, and 
        Initial-Value Problems ................................ 195
   2.5  Fluids, Deformable Solids, and Electromagnetic 
        Fields ................................................ 210
3  Spherically Symmetric Space-Time Domains ................... 229
   3.1  Schwarzschild Solution ................................ 229
   3.2  Spherically Symmetric Static Interior Solutions ....... 246
   3.3  Nonstatic, Spherically Symmetric Solutions ............ 258
4  Static and Stationary Space-Time Domains ................... 277
   4.1  Static Axially Symmetric Space-Time Domains ........... 277
   4.2  The General Static Field Equations .................... 290
   4.3  Axially Symmetric Stationary Space-Time Domains ....... 317
   4.4  The General Stationary Field Equations ................ 331
5  Black Holes ................................................ 351
   5.1  Spherically Symmetric Black Holes ..................... 351
   5.2  Kerr Black Holes ...................................... 384
   5.3  Exotic Black Holes .................................... 403
6  Cosmology .................................................. 419
   6.1  Big Bang Models ....................................... 419
   6.2  Scalar Fields in Cosmology ............................ 440
   6.3  Five-Dimensional Cosmological Models .................. 456
7  Algebraic Classification of Field Equations ................ 465
   7.1  The Petrov Classification of the Curvature Tensor ..... 465
   7.2  Newman-Penrose Equations .............................. 503
8  The Coupled Einstein-Maxwell-Klein-Gordon Equations ........ 537
   8.1  The General E-M-K-G Field Equations ................... 537
   8.2  Static Space-Time Domains and the E-M-K-G Equations ... 542
   8.3  Spherical Symmetry and a Nonlinear Eigenvalue
        Problem for a Theoretical Fine-Structure Constant ..... 551
Appendix 1  Variational Derivation of Differential
            Equations ......................................... 569
Appendix 2  Partial Differential Equations .................... 585
Appendix 3  Canonical Forms of Matrices ....................... 605
Appendix 4  Conformally Flat Space-Times and "the Fifth 
            Force" ............................................ 617
Appendix 5  Linearized Theory and Gravitational Waves ......... 625
Appendix 6  Exotic Solutions: Wormholes, Warp-Drives,
            and Time Machines ................................. 633
Appendix 7  Gravitational Instantons .......................... 647
Appendix 8  Computational Symbolic Algebra Calculations ....... 653
References .................................................... 661
Index ......................................................... 669


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