We develop a semiclassical approximation scheme for the constraint equations of supersymmetric canonical quantum gravity. This is achieved by a Born-Oppenheimer type of expansion, in analogy to the case of the usual Wheeler-DeWitt equation. The formalism is only consistent if the states at each order depend on the gravitino field. We recover at consecutive orders the Hamilton-Jacobi equation, the functional Schrodinger equation, and quantum gravitational correction terms to this Schrodinger equation. In particular, the following consequences are found: (i) the Hamilton-Jacobi equation and therefore the background spacetime must involve the gravitino, (ii) a (many fingered) local time parameter has to be present on $SuperRiem \Sigma$ (the sp...
The necessary and sufficient conditions for the exactness of the semiclassical approximation for the...
Some recent developments in the study of quantum gravity and its semiclassical limit are reviewed. T...
In semiclassical gravity the back-reaction of the classical gravitational field interacting with qua...
In this paper we investigate the different possible ways of defining the semiclassical limit of quan...
Semiclassical approximations, which are useful in the study of a quantum system interacting with a c...
Introduction Quantum gravity is often considered to be the holy grail of theoretical physics. One ap...
A possible solution of the problem of time in the Wheeler–DeWitt quantum geometrodynamics is that ti...
This article will summarize selected aspects of the semiclassical theory of gravity, which involves ...
The emergent semiclassical time approach to resolving the problem of time in quantum gravity involve...
In the previous article a new combinatorial and thus purely algebraical approach to quantum gravity,...
This thesis is composed of two separate parts. The first part is on the stability issue of a ground ...
The formulation of a consistent scheme for treating semiclassical systems is considered, giving part...
We discuss the semiclassical limit of quantum reduced loop gravity, a recently proposed model to add...
The authors continue their investigation of approximation schemes for obtaining semiclassical Einste...
It is expected that the quantum nature of spacetime leaves its imprint in all semiclassical gravitat...
The necessary and sufficient conditions for the exactness of the semiclassical approximation for the...
Some recent developments in the study of quantum gravity and its semiclassical limit are reviewed. T...
In semiclassical gravity the back-reaction of the classical gravitational field interacting with qua...
In this paper we investigate the different possible ways of defining the semiclassical limit of quan...
Semiclassical approximations, which are useful in the study of a quantum system interacting with a c...
Introduction Quantum gravity is often considered to be the holy grail of theoretical physics. One ap...
A possible solution of the problem of time in the Wheeler–DeWitt quantum geometrodynamics is that ti...
This article will summarize selected aspects of the semiclassical theory of gravity, which involves ...
The emergent semiclassical time approach to resolving the problem of time in quantum gravity involve...
In the previous article a new combinatorial and thus purely algebraical approach to quantum gravity,...
This thesis is composed of two separate parts. The first part is on the stability issue of a ground ...
The formulation of a consistent scheme for treating semiclassical systems is considered, giving part...
We discuss the semiclassical limit of quantum reduced loop gravity, a recently proposed model to add...
The authors continue their investigation of approximation schemes for obtaining semiclassical Einste...
It is expected that the quantum nature of spacetime leaves its imprint in all semiclassical gravitat...
The necessary and sufficient conditions for the exactness of the semiclassical approximation for the...
Some recent developments in the study of quantum gravity and its semiclassical limit are reviewed. T...
In semiclassical gravity the back-reaction of the classical gravitational field interacting with qua...