The intuitive classical space-time picture breaks down in quantum gravity, which makes a comparison and the development of semiclassical techniques quite complicated. By a variation of the group averaging method to solve constraints one can nevertheless introduce a classical coordinate time into the quantum theory, and use it to investigate the way a semiclassical continuous description emerges from discrete quantum evolution. Applying this technique to test effective classical equations of loop cosmology and their implications for inflation and bounces, we show that the effective semiclassical theory is in good agreement with the quantum description even at short scales
A practical way to deal with the problem of time in quantum cosmology and quantum gravity is propose...
Some recent developments in the study of quantum gravity and its semiclassical limit are reviewed. T...
The framework of a theory of gravity from the quantum to the classical regime is presented. The para...
The intuitive classical space-time picture breaks down in quantum gravity, which makes a comparison ...
The intuitive classical space-time picture breaks down in quantum gravity, which makes a comparison ...
The intuitive classical space-time picture breaks down in quantum gravity, which makes a comparison ...
We construct physical semiclassical states annihilated by the Hamiltonian constraint operator in the...
The problem of time emerging in the canonical quantization procedure of gravity signals a necessity ...
A possible solution of the problem of time in the Wheeler–DeWitt quantum geometrodynamics is that ti...
In this paper, we argue that the problem of time is not a crucial issue inherent in the quantum pict...
The emergent semiclassical time approach to resolving the problem of time in quantum gravity involve...
Quantum gravity is expected to be necessary in order to understand situations where classical genera...
Simple Summary We briefly review the problem of time in quantum cosmology and present two possible s...
One of the most important issues in quantum gravity is to identify its semi-classical regime. First ...
We discuss the semiclassical limit of quantum reduced loop gravity, a recently proposed model to add...
A practical way to deal with the problem of time in quantum cosmology and quantum gravity is propose...
Some recent developments in the study of quantum gravity and its semiclassical limit are reviewed. T...
The framework of a theory of gravity from the quantum to the classical regime is presented. The para...
The intuitive classical space-time picture breaks down in quantum gravity, which makes a comparison ...
The intuitive classical space-time picture breaks down in quantum gravity, which makes a comparison ...
The intuitive classical space-time picture breaks down in quantum gravity, which makes a comparison ...
We construct physical semiclassical states annihilated by the Hamiltonian constraint operator in the...
The problem of time emerging in the canonical quantization procedure of gravity signals a necessity ...
A possible solution of the problem of time in the Wheeler–DeWitt quantum geometrodynamics is that ti...
In this paper, we argue that the problem of time is not a crucial issue inherent in the quantum pict...
The emergent semiclassical time approach to resolving the problem of time in quantum gravity involve...
Quantum gravity is expected to be necessary in order to understand situations where classical genera...
Simple Summary We briefly review the problem of time in quantum cosmology and present two possible s...
One of the most important issues in quantum gravity is to identify its semi-classical regime. First ...
We discuss the semiclassical limit of quantum reduced loop gravity, a recently proposed model to add...
A practical way to deal with the problem of time in quantum cosmology and quantum gravity is propose...
Some recent developments in the study of quantum gravity and its semiclassical limit are reviewed. T...
The framework of a theory of gravity from the quantum to the classical regime is presented. The para...