The deBroglie-Bohm quantum potential is the potential energy function of the wave field. The quantum potential facilitates the transference of energy from wave field to particle and back again which accounts for energy conservation in isolated quantum systems. Factors affecting energy exchanges and the form of the quantum potential are discussed together with the related issues of the absence of a source term for the wave field and the lack of a classical back reaction
An differential equation for wave functions is derived from Heisenberg's equation, which is equivale...
Neste trabalho, buscamos uma interpretação física para o Efeito Aharonov-Bohm, um dos primeiros e ma...
The Schrödinger equation can be solved in terms of quantum trajectories evolving under the influence...
Non-relativistic deBroglie-Bohm theory describes particles moving under the guid-ance of the wave fu...
In the deBroglie-Bohm causal interpretation of quantum mechanics, the motion of a quantum particle i...
We try to give a physical meaning to the wave function or quantum state of a system, apart from bein...
We investigate the validity of the field explanation of the wave function by analyzing the mass and ...
There are three possible interpretations of the wave function in the de Broglie-Bohm theory: taking ...
The quantum potential energy, as introduced by David Bohm, is defined and interpreted within symplec...
We investigate the implications of protective measurement for de Broglie-Bohm theory, mainly focusin...
A formulation is proposed for the behavior of a particle in a box based on two assumptions: (1) part...
It is shown that the de Broglie-Bohm theory has a potential problem concerning the mass and charge d...
The one-electron potential, derived from the electron density, is a three-dimensional function, wher...
An exact complex mapping of the wave function has been found, which, when followed by a separation i...
Technology majors when introduced to quantum concepts, invariably encounter difficulties in the unde...
An differential equation for wave functions is derived from Heisenberg's equation, which is equivale...
Neste trabalho, buscamos uma interpretação física para o Efeito Aharonov-Bohm, um dos primeiros e ma...
The Schrödinger equation can be solved in terms of quantum trajectories evolving under the influence...
Non-relativistic deBroglie-Bohm theory describes particles moving under the guid-ance of the wave fu...
In the deBroglie-Bohm causal interpretation of quantum mechanics, the motion of a quantum particle i...
We try to give a physical meaning to the wave function or quantum state of a system, apart from bein...
We investigate the validity of the field explanation of the wave function by analyzing the mass and ...
There are three possible interpretations of the wave function in the de Broglie-Bohm theory: taking ...
The quantum potential energy, as introduced by David Bohm, is defined and interpreted within symplec...
We investigate the implications of protective measurement for de Broglie-Bohm theory, mainly focusin...
A formulation is proposed for the behavior of a particle in a box based on two assumptions: (1) part...
It is shown that the de Broglie-Bohm theory has a potential problem concerning the mass and charge d...
The one-electron potential, derived from the electron density, is a three-dimensional function, wher...
An exact complex mapping of the wave function has been found, which, when followed by a separation i...
Technology majors when introduced to quantum concepts, invariably encounter difficulties in the unde...
An differential equation for wave functions is derived from Heisenberg's equation, which is equivale...
Neste trabalho, buscamos uma interpretação física para o Efeito Aharonov-Bohm, um dos primeiros e ma...
The Schrödinger equation can be solved in terms of quantum trajectories evolving under the influence...