The average dynamics of a classical particle under the action of a high-frequency radiation resembles quantum particle motion in a conservative field with an effective de Broglie wavelength ë equal to the particle average displacement on a period of oscillations. In a "quasi-classical" field, with a spatial scale large compared to ë, the guiding center motion is adiabatic. Otherwise, a particle exhibits quantized eigenstates in a ponderomotive potential well, can tunnel through classically forbidden regions and experience reflection from an attractive potential. Discrete energy levels are also found for a "crystal" formed by multiple ponderomotive barriers
The classical limit of quantum mechanics is often considered in terms of the time dependent Schrodin...
We investigate classical Hamiltonian models for particles interacting with steep differential repuls...
Abstract. The quantal behaviour of a particle in a onPdimensional triangular potential well, driven ...
We study the effective dynamics of microscopic models of quantum particles interacting with a bosoni...
We study the ground state energy and ground states of systems coupling non-relativistic quantum part...
The correspondence principle provides a prescription to connect quantum physics to classical. It ass...
The problem of a charged particle enclosed in an infinite square potential well is analysed from the...
International audienceParticles traveling in aligned crystals at small angles w.r.t. crystallographi...
The Wannier-Bloch resonance states are metastable states of a quantum particle in a space-periodic ...
We report here an analogue for the vacuum state in classical field theory and its Planckian nature w...
Early experiments linked to bound state quantum mechanics noticed discrete energy E levels. (Ignorin...
We adopt the general formalism, which was developed in Paper I to analyze the evolution of a quantiz...
We report here experimental results which point to a rather unexpected, astonishing behavior of char...
In the original formulation of quantum mechanics the existence of a precise border between a microsc...
The fractal equations of mechanics (quantum and classical) are clearly demonstrated to be definition...
The classical limit of quantum mechanics is often considered in terms of the time dependent Schrodin...
We investigate classical Hamiltonian models for particles interacting with steep differential repuls...
Abstract. The quantal behaviour of a particle in a onPdimensional triangular potential well, driven ...
We study the effective dynamics of microscopic models of quantum particles interacting with a bosoni...
We study the ground state energy and ground states of systems coupling non-relativistic quantum part...
The correspondence principle provides a prescription to connect quantum physics to classical. It ass...
The problem of a charged particle enclosed in an infinite square potential well is analysed from the...
International audienceParticles traveling in aligned crystals at small angles w.r.t. crystallographi...
The Wannier-Bloch resonance states are metastable states of a quantum particle in a space-periodic ...
We report here an analogue for the vacuum state in classical field theory and its Planckian nature w...
Early experiments linked to bound state quantum mechanics noticed discrete energy E levels. (Ignorin...
We adopt the general formalism, which was developed in Paper I to analyze the evolution of a quantiz...
We report here experimental results which point to a rather unexpected, astonishing behavior of char...
In the original formulation of quantum mechanics the existence of a precise border between a microsc...
The fractal equations of mechanics (quantum and classical) are clearly demonstrated to be definition...
The classical limit of quantum mechanics is often considered in terms of the time dependent Schrodin...
We investigate classical Hamiltonian models for particles interacting with steep differential repuls...
Abstract. The quantal behaviour of a particle in a onPdimensional triangular potential well, driven ...