In quantum mechanics, a classical particle is raised to a wave-function, thereby acquiring many more degrees of freedom. For instance, in the semi-classical regime, while the position and momentum expectation values follow the classical trajectory, the uncertainty of a wave-packet can evolve and beat independently. We use this insight to revisit the dynamics of a 1d particle in a time-dependent harmonic well. One can solve it by considering time reparameterizations and the Virasoro group action to map the system to the harmonic oscillator with constant frequency. We prove that identifying such a simplifying time variable is naturally solved by quantizing the system and looking at the evolution of the width of a Gaussian wave-packet. We furt...
In spite of outstanding achievement of the quantum theory, the theory is under never-ending judgment...
Investigation into the applicability of the equivalence principle in quantum mechanics has taken man...
Unimodular quantum cosmology admits wavepacket solutions that evolve according to a kind of Schr\"od...
This work explores the behaviour of a noncommutative harmonic oscillator in a time-dependent backgro...
The quantum measurement problem resolves according to the twofold nature of time. Whereas the contin...
International audienceAn effective operational approach to quantum mechanics is to focus on the evol...
In quantum mechanics without application of any superselection rule to the set of the observables, a...
A new Bohmian quantum-relativistic model, in which from the Klein-Gordon equation a generalization o...
Is the Schr\"odinger equation with the Hamiltonian $\widehat{H}=-i\hbar\frac{\partial\ }{\partial\ta...
As time is not an observable, we use Fisher information (FI) to address the problem of time. We show...
In this paper for the first time, we construct quantum analogs starting from classical stochastic pr...
An effective operational approach to quantum mechanics is to focus on the evolution of wave packets,...
Dedicated to the memory of J. S. Bell. Abstract. The quantum formalism is a \measurement " form...
Particle in one dimensional potential well demonstrates typical quantum mechanical behaviors determi...
We formulate the transition from decelerated to accelerated expansion as a bounce in connection spac...
In spite of outstanding achievement of the quantum theory, the theory is under never-ending judgment...
Investigation into the applicability of the equivalence principle in quantum mechanics has taken man...
Unimodular quantum cosmology admits wavepacket solutions that evolve according to a kind of Schr\"od...
This work explores the behaviour of a noncommutative harmonic oscillator in a time-dependent backgro...
The quantum measurement problem resolves according to the twofold nature of time. Whereas the contin...
International audienceAn effective operational approach to quantum mechanics is to focus on the evol...
In quantum mechanics without application of any superselection rule to the set of the observables, a...
A new Bohmian quantum-relativistic model, in which from the Klein-Gordon equation a generalization o...
Is the Schr\"odinger equation with the Hamiltonian $\widehat{H}=-i\hbar\frac{\partial\ }{\partial\ta...
As time is not an observable, we use Fisher information (FI) to address the problem of time. We show...
In this paper for the first time, we construct quantum analogs starting from classical stochastic pr...
An effective operational approach to quantum mechanics is to focus on the evolution of wave packets,...
Dedicated to the memory of J. S. Bell. Abstract. The quantum formalism is a \measurement " form...
Particle in one dimensional potential well demonstrates typical quantum mechanical behaviors determi...
We formulate the transition from decelerated to accelerated expansion as a bounce in connection spac...
In spite of outstanding achievement of the quantum theory, the theory is under never-ending judgment...
Investigation into the applicability of the equivalence principle in quantum mechanics has taken man...
Unimodular quantum cosmology admits wavepacket solutions that evolve according to a kind of Schr\"od...