The relation between quantum dynamics and classical dynamics is considered from the perspective of an experimentalist. Since noise is present in all measurements, experimental results cannot be exact, but have a finite uncertainty. Accordingly, the deterministic dynamic theories do not describe some reality, but idealizations of nature. The idealization of quantum dynamics is different from the idealization of classical dynamics. The objects of the two theories are subject to different idealized conditions. The objects of classical dynamics are observable continuously, whereas the objects of quantum dynamics are unobservable
1noQuantum Mechanics is one of the most successful theories of nature. It accounts for all known pro...
Nonintegrable Poincaré systems with continuous spectrum (so-called Large Poincaré Systems, LPS) lead...
We investigate Quantum Darwinism and the emergence of a classical world from the quantum one in conn...
We show that determinism is false assuming a realistic interpretation of quantum mechanics and consi...
Quantum theory expresses the observable relations between physical properties in terms of probabilit...
We show that determinism is false assuming a realistic interpretation of quantum mechanics and consi...
Classical dynamics and the classical concept of space-time reality is based on the assumption that t...
The relationship between chaos and quantum mechanics has been somewhat uneasy -- even stormy, in the...
The claim that there is an inconsistency of quantum-classical dynamics [1] is investigated. We point...
The influence of various choices of dynamic variables in quantum theory on the interpretation of mea...
A new proof of the impossibility of a universal quantum-classical dynamics is given. It has at least...
An elementary review of the origin of quantum theory, with focus on the nature of the quantum dynami...
State of the art and motivations In quantum mechanics, the Schrödinger equation regulates the evolu...
Blanchard P, Olkiewicz R. Decoherence induced transition from quantum to classical dynamics. REVIEWS...
Using semiclassical methods, it is possible to construct very accurate approximations in the short-w...
1noQuantum Mechanics is one of the most successful theories of nature. It accounts for all known pro...
Nonintegrable Poincaré systems with continuous spectrum (so-called Large Poincaré Systems, LPS) lead...
We investigate Quantum Darwinism and the emergence of a classical world from the quantum one in conn...
We show that determinism is false assuming a realistic interpretation of quantum mechanics and consi...
Quantum theory expresses the observable relations between physical properties in terms of probabilit...
We show that determinism is false assuming a realistic interpretation of quantum mechanics and consi...
Classical dynamics and the classical concept of space-time reality is based on the assumption that t...
The relationship between chaos and quantum mechanics has been somewhat uneasy -- even stormy, in the...
The claim that there is an inconsistency of quantum-classical dynamics [1] is investigated. We point...
The influence of various choices of dynamic variables in quantum theory on the interpretation of mea...
A new proof of the impossibility of a universal quantum-classical dynamics is given. It has at least...
An elementary review of the origin of quantum theory, with focus on the nature of the quantum dynami...
State of the art and motivations In quantum mechanics, the Schrödinger equation regulates the evolu...
Blanchard P, Olkiewicz R. Decoherence induced transition from quantum to classical dynamics. REVIEWS...
Using semiclassical methods, it is possible to construct very accurate approximations in the short-w...
1noQuantum Mechanics is one of the most successful theories of nature. It accounts for all known pro...
Nonintegrable Poincaré systems with continuous spectrum (so-called Large Poincaré Systems, LPS) lead...
We investigate Quantum Darwinism and the emergence of a classical world from the quantum one in conn...