The paper investigates the quantum fluctuating dynamics by using the stochastic generalization of the Madelung quantum-hydrodynamic approach. By using the discrete approach, the path integral solution is derived in order to investigate how the final stationary configuration is obtained from the initial quantum superposition of states. The model shows that the quantum eigenstates remain stationary configurations with a very small perturbation of their mass density distribution and that any eigenstate, contributing to a quantum superposition of states, can be reached in the final stationary configuration. When the non-local quantum potential acquires a finite range of interaction, the work shows that the macroscopic coarse-grained description...
The most general description of the classical world is in terms of local densities (such as number, ...
In this review study, we ask ourselves if decoherence theory can solve the problems of measurement i...
Reliable processing of quantum information is a milestone to achieve for the deployment of quantum t...
Based on the superposition principle, any two states of a quantum system may be coherently superpose...
Three existing interpretations of quantum mechanics, given by Heisenberg, Bohm and Madelung, are exa...
We investigate decoherence in the limit where the interaction with the environment is weak and the e...
peer reviewedProgress toward quantum technologies continues to provide essential new insights into t...
Superposition states are at the origin of many paradoxes in quantum mechanics. By unraveling the von...
The effects of decoherence for quantum system coupled with a bosonic field are investigated. An appl...
We address the dynamics of nonclassicality for a quantum system interacting with a noisy fluctuating...
The results of some simple calculations designed to study quantum decoherence are presented. The phy...
Quantum systems are subject to dissipation as perfect isolation from the surrounding environment is ...
This paper introduces an exact correspondence between a general class of stochastic systems and quan...
In this paper, we describe a new and fully coherent stochastic surface hopping method for simulating...
Quantum mechanics exhibits a broad collection of theoretical results in complete agreement with expe...
The most general description of the classical world is in terms of local densities (such as number, ...
In this review study, we ask ourselves if decoherence theory can solve the problems of measurement i...
Reliable processing of quantum information is a milestone to achieve for the deployment of quantum t...
Based on the superposition principle, any two states of a quantum system may be coherently superpose...
Three existing interpretations of quantum mechanics, given by Heisenberg, Bohm and Madelung, are exa...
We investigate decoherence in the limit where the interaction with the environment is weak and the e...
peer reviewedProgress toward quantum technologies continues to provide essential new insights into t...
Superposition states are at the origin of many paradoxes in quantum mechanics. By unraveling the von...
The effects of decoherence for quantum system coupled with a bosonic field are investigated. An appl...
We address the dynamics of nonclassicality for a quantum system interacting with a noisy fluctuating...
The results of some simple calculations designed to study quantum decoherence are presented. The phy...
Quantum systems are subject to dissipation as perfect isolation from the surrounding environment is ...
This paper introduces an exact correspondence between a general class of stochastic systems and quan...
In this paper, we describe a new and fully coherent stochastic surface hopping method for simulating...
Quantum mechanics exhibits a broad collection of theoretical results in complete agreement with expe...
The most general description of the classical world is in terms of local densities (such as number, ...
In this review study, we ask ourselves if decoherence theory can solve the problems of measurement i...
Reliable processing of quantum information is a milestone to achieve for the deployment of quantum t...