In the deBroglie-Bohm causal interpretation of quantum mechanics, the motion of a quantum particle is governed by its wave field which is taken to be a physically real field. The surrounding environment modifies the form of the wave field which, in turn, alters the motion of the particle. It is found that the dynamic role of the wave field is to influence the trajectory of a quantum particle by means of transferring energy-momentum
We investigate the validity of the field explanation of the wave function by analyzing the mass and ...
Student PresentationsThis contribution aims to show the complex interplay between the ontological st...
A quantum analogue of the transition from regular to chaotic motion in the Hénon-Heiles oscillator h...
Non-relativistic deBroglie-Bohm theory describes particles moving under the guid-ance of the wave fu...
The deBroglie-Bohm quantum potential is the potential energy function of the wave field. The quantum...
We consider the hydrodynamic quantum field theory proposed by Dagan and Bush, a model of quantum dyn...
We consider the hydrodynamic quantum field theory proposed by Dagan and Bush, a model of quantum dyn...
A relation for the wave and particle properties is derived, when a body is moving with high velocity...
Starting from the dynamics of a bouncing ball in classical and quantum regime, we suggest a modifica...
Meaning, advantages, and disadvantages of nonrelativistic bohmian. quantum theory is investigated, b...
© Académie des sciences, Paris and the authors, 2020. Some rights reserved. We revisit de Broglie’s ...
We investigate the meaning of the wave function by analyzing the mass and charge density distributio...
We develop a Lorentz-covariant theory for the mutual interaction of a wave and a particle. The Bohm-...
We investigate the meaning of the wave function by analyzing the mass and charge density distributio...
A mathematical model of the so-called wave-AND-particle, which constantly and simultaneously exhibit...
We investigate the validity of the field explanation of the wave function by analyzing the mass and ...
Student PresentationsThis contribution aims to show the complex interplay between the ontological st...
A quantum analogue of the transition from regular to chaotic motion in the Hénon-Heiles oscillator h...
Non-relativistic deBroglie-Bohm theory describes particles moving under the guid-ance of the wave fu...
The deBroglie-Bohm quantum potential is the potential energy function of the wave field. The quantum...
We consider the hydrodynamic quantum field theory proposed by Dagan and Bush, a model of quantum dyn...
We consider the hydrodynamic quantum field theory proposed by Dagan and Bush, a model of quantum dyn...
A relation for the wave and particle properties is derived, when a body is moving with high velocity...
Starting from the dynamics of a bouncing ball in classical and quantum regime, we suggest a modifica...
Meaning, advantages, and disadvantages of nonrelativistic bohmian. quantum theory is investigated, b...
© Académie des sciences, Paris and the authors, 2020. Some rights reserved. We revisit de Broglie’s ...
We investigate the meaning of the wave function by analyzing the mass and charge density distributio...
We develop a Lorentz-covariant theory for the mutual interaction of a wave and a particle. The Bohm-...
We investigate the meaning of the wave function by analyzing the mass and charge density distributio...
A mathematical model of the so-called wave-AND-particle, which constantly and simultaneously exhibit...
We investigate the validity of the field explanation of the wave function by analyzing the mass and ...
Student PresentationsThis contribution aims to show the complex interplay between the ontological st...
A quantum analogue of the transition from regular to chaotic motion in the Hénon-Heiles oscillator h...