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Kühnel, Florian: Stochastic cosmological inflation : a replica field-theoretical study. 2009
Inhalt
1 Cosmological Inflation
1.1 Friedmann Space-Time
1.2 Shortcomings of the Standard Big Bang Theory
1.2.1 Flatness Problem
1.2.2 Horizon Problem
1.3 Standard Inflationary Universe
1.3.1 Slow-Roll
1.3.2 Inflation and the Shortcomings of the Standard Big Bang Theory
1.4 Inflation and Cosmological Perturbations
2 Cosmological Perturbations & Primordial Inhomogeneities
2.1 Perturbations
2.2 Gauges
2.3 Gauge-Invariant Variables
2.4 Dynamical Equations
2.5 Hydro-Dynamical Perturbations
2.5.1 Long-Wavelength Solutions
2.5.2 Short-Wavelength Solutions
2.6 Baryon-Radiation Plasma and Cold Dark Matter
2.6.1 Long-Wavelength Solutions
2.6.2 Short-Wavelength Solutions
2.7 Origin of Primordial Inhomogeneities
2.7.1 Perturbations
2.7.2 Canonical Scalar Field
2.7.3 Inflationary Gravitational Waves
3 Cosmic Microwave Background Anisotropies
3.1 Boltzmann Equation and Temperature Fluctuations
3.2 Sachs-Wolfe Effect
3.3 Temperature Correlation
3.4 Other Effects
3.4.1 Small-Scale Anisotropies
3.4.2 Reionisation
3.4.3 Gravitational Waves
3.4.4 Polarisation
4 Stochastic Cosmological Inflation
4.1 Effective Equation of Motion
4.2 Other Results
5 Replica Field Theory
5.1 Random Field Ising Model
5.2 Elastic Systems
5.3 Replica Trick
5.4 Noise Distributions
5.5 Variational Method
5.5.1 Feynman-Jensen Inequality
5.5.2 Long-Range Correlation
5.5.3 Replica Symmetric Propagator
6 Stochastic Inflation & Replica Field Theory
6.1 Free Power Spectrum
6.2 Effective Power Spectrum
6.2.1 Long-Range Correlation
6.2.2 Stochastic Inflation
6.3 Filter Functions
6.3.1 Modified Gaussian Fluctuations
6.4 Self-Interactions
6.5 Possible CMB effects
Summary & Outlook
Appendix: Replica Symmetry Breaking
Bibliography