Linear cosmological perturbation theory is pivotal to a theoretical understanding of current cosmological experimental data provided e.g. by cosmic microwave anisotropy probes. A key issue in that theory is to extract the gauge invariant degrees of freedom which allow unambiguous comparison between theory and experiment. When one goes beyond first (linear) order, the task of writing the Einstein equations expanded to n'th order in terms of quantities that are gauge invariant up to terms of higher orders becomes highly non-trivial and cumbersome. This fact has prevented progress for instance on the issue of the stability of linear perturbation theory and is a subject of current debate in the literature. In this series of papers we circumvent...
Accounting for all the relativistic effects, we have developed the fully nonlinear gauge-invariant f...
Accounting for all the relativistic effects, we have developed the fully nonlinear gauge-invariant f...
Accounting for all the relativistic effects, we have developed the fully nonlinear gauge-invariant f...
Linear cosmological perturbation theory is pivotal to a theoretical understanding of current cosmolo...
In our companion paper we identified a complete set of manifestly gauge-invariant observables for ge...
In our companion paper we identified a complete set of manifestly gauge-invariant observables for ge...
In our companion paper we identified a complete set of manifestly gauge-invariant observables for ge...
Abstract: It is shown how cosmological perturbation theory arises from a fully quantized perturbativ...
It is shown how cosmological perturbation theory arises from a fully quantized perturbative theory o...
Along the general framework of the gauge invariant perturbation theory developed in the papers [K. N...
We consider in detail the problem of gauge dependence that exists in relativistic perturbation theor...
Gauge invariant treatments of the second order cosmological perturbation in a four dimensional homog...
We discuss the issue of observables in general-relativistic perturbation theory, adopting the view t...
Using the extended ADM-phase space formulation in the canonical framework we analyze the relationshi...
In this thesis the mathematical formulation of cosmological perturbations is studied. First we discu...
Accounting for all the relativistic effects, we have developed the fully nonlinear gauge-invariant f...
Accounting for all the relativistic effects, we have developed the fully nonlinear gauge-invariant f...
Accounting for all the relativistic effects, we have developed the fully nonlinear gauge-invariant f...
Linear cosmological perturbation theory is pivotal to a theoretical understanding of current cosmolo...
In our companion paper we identified a complete set of manifestly gauge-invariant observables for ge...
In our companion paper we identified a complete set of manifestly gauge-invariant observables for ge...
In our companion paper we identified a complete set of manifestly gauge-invariant observables for ge...
Abstract: It is shown how cosmological perturbation theory arises from a fully quantized perturbativ...
It is shown how cosmological perturbation theory arises from a fully quantized perturbative theory o...
Along the general framework of the gauge invariant perturbation theory developed in the papers [K. N...
We consider in detail the problem of gauge dependence that exists in relativistic perturbation theor...
Gauge invariant treatments of the second order cosmological perturbation in a four dimensional homog...
We discuss the issue of observables in general-relativistic perturbation theory, adopting the view t...
Using the extended ADM-phase space formulation in the canonical framework we analyze the relationshi...
In this thesis the mathematical formulation of cosmological perturbations is studied. First we discu...
Accounting for all the relativistic effects, we have developed the fully nonlinear gauge-invariant f...
Accounting for all the relativistic effects, we have developed the fully nonlinear gauge-invariant f...
Accounting for all the relativistic effects, we have developed the fully nonlinear gauge-invariant f...