Abstract Quantum cosmology is crucial to understand the evolution of the early universe. Despite significant progress, challenges still remain. For example, the role of time in quantum cosmology is unclear. Furthermore, the influence of the environment on the evolution of the quantum universe is challenging. In this work, we studied the evolution of the quantum universe non-perturbatively using the closed real-time path integral. The environments coupled to the quantum universe being considered are the radiation, the non-relativistic matter, or the dark matter. We evaluated the influence functional of the massless scalar field coupled with the flat FRW universe. We studied the evolution of the quantum universe by setting the initial state o...
We present a model of space that considers it to be a quantized dynamical entity which is a componen...
Motivated by the growing interest in generation of stringy landscape via quantum creation from nothi...
International audienceWe go forward in completing the Standard Model of the Universe back in time wi...
Quantum cosmology is crucial to understand the evolution of the early universe. Despite significant ...
The standard big bang models of classical cosmology are known to possess three defects. The oldest k...
There is a formal analogy between the evolution of the universe, when it is seen as a trajectory in ...
We suggest a novel picture of the quantum Universe -- its creation is described by the density matri...
We suggest a novel picture of the quantum Universe -- its creation is described by the density matri...
We suggest a novel picture of the quantum Universe -- its creation is described by the density matri...
We present a Quantum Space Model (QSM) of cosmic evolution based on the theory that space consists o...
We present a Quantum Space Model (QSM) of cosmic evolution based on the theory that space consists o...
Classical relativistic cosmology is known to have the space-time singularity as an inevitable featur...
We investigate whether quantum fluctuations can have a significant impact on the evolution of the un...
Quantum field theory is indispensable for understanding many aspects of cosmology, both in the early...
We present a model of space that considers it to be a quantized dynamical entity which is a componen...
We present a model of space that considers it to be a quantized dynamical entity which is a componen...
Motivated by the growing interest in generation of stringy landscape via quantum creation from nothi...
International audienceWe go forward in completing the Standard Model of the Universe back in time wi...
Quantum cosmology is crucial to understand the evolution of the early universe. Despite significant ...
The standard big bang models of classical cosmology are known to possess three defects. The oldest k...
There is a formal analogy between the evolution of the universe, when it is seen as a trajectory in ...
We suggest a novel picture of the quantum Universe -- its creation is described by the density matri...
We suggest a novel picture of the quantum Universe -- its creation is described by the density matri...
We suggest a novel picture of the quantum Universe -- its creation is described by the density matri...
We present a Quantum Space Model (QSM) of cosmic evolution based on the theory that space consists o...
We present a Quantum Space Model (QSM) of cosmic evolution based on the theory that space consists o...
Classical relativistic cosmology is known to have the space-time singularity as an inevitable featur...
We investigate whether quantum fluctuations can have a significant impact on the evolution of the un...
Quantum field theory is indispensable for understanding many aspects of cosmology, both in the early...
We present a model of space that considers it to be a quantized dynamical entity which is a componen...
We present a model of space that considers it to be a quantized dynamical entity which is a componen...
Motivated by the growing interest in generation of stringy landscape via quantum creation from nothi...
International audienceWe go forward in completing the Standard Model of the Universe back in time wi...