Knowlegde on quantum and chaos theoryThe causal interpretation of quantum theory developed by David Bohm introduced trajectories that are guided by a real phase function from the wavefunction in the polar form. A simple model is used to get chaotic motion; the trajectories undergo a transition from order to chaos depending on the relative phase factors and . The trajectories circle close to the minimum (nodal) points. For example, at the origin the squared wavefunction has a minimum for all t. The graphic shows the squared time-dependent wavefunction, the quantum particles, and the complete pathsComponente Curricular::Educação Superior::Ciências Exatas e da Terra::Físic
In Bohmian mechanics, a single-particle quantum system is described in part by its wave function and...
Concepts of quantum theory and bohmian interpretation of quantum theoryThis demonstration shows the...
Concepts of quantum theory and bohmian interpretation of quantum theoryThis demonstration shows the...
Knowlegde on quantum and chaos theoryThe causal interpretation of quantum theory developed by David...
In this thesis, properties of particle trajectories associated with the de Broglie-Bohm causal inter...
Chaotic behavior of a nonlinear system is characterized by the high sensitivity of its phase-space t...
A quantum analogue of the transition from regular to chaotic motion in the Hénon-Heiles oscillator h...
Bohmian mechanics is a causal interpretation of quantum mechanics in which particles describe trajec...
Bohmian mechanics is a causal interpretation of quantum mechanics in which particles describe trajec...
It is argued that dynamical chaos in quantum mechanics arises solely from the collapse rule applied ...
The relationship between chaos and quantum mechanics has been somewhat uneasy -- even stormy, in the...
Faisal F, Schwengelbeck U. de Broglie-Bohm formulation of quantum mechanics, quantum chaos and break...
Quantum domain behaviour of classically chaotic systems is studied using the quantum theory of motio...
Bohmian mechanics is a causal interpretation of quantum mechanics in which there are well-defined pa...
Quantum trajectories defined in the de Broglie-Bohm theory provide a causal way to interpret physica...
In Bohmian mechanics, a single-particle quantum system is described in part by its wave function and...
Concepts of quantum theory and bohmian interpretation of quantum theoryThis demonstration shows the...
Concepts of quantum theory and bohmian interpretation of quantum theoryThis demonstration shows the...
Knowlegde on quantum and chaos theoryThe causal interpretation of quantum theory developed by David...
In this thesis, properties of particle trajectories associated with the de Broglie-Bohm causal inter...
Chaotic behavior of a nonlinear system is characterized by the high sensitivity of its phase-space t...
A quantum analogue of the transition from regular to chaotic motion in the Hénon-Heiles oscillator h...
Bohmian mechanics is a causal interpretation of quantum mechanics in which particles describe trajec...
Bohmian mechanics is a causal interpretation of quantum mechanics in which particles describe trajec...
It is argued that dynamical chaos in quantum mechanics arises solely from the collapse rule applied ...
The relationship between chaos and quantum mechanics has been somewhat uneasy -- even stormy, in the...
Faisal F, Schwengelbeck U. de Broglie-Bohm formulation of quantum mechanics, quantum chaos and break...
Quantum domain behaviour of classically chaotic systems is studied using the quantum theory of motio...
Bohmian mechanics is a causal interpretation of quantum mechanics in which there are well-defined pa...
Quantum trajectories defined in the de Broglie-Bohm theory provide a causal way to interpret physica...
In Bohmian mechanics, a single-particle quantum system is described in part by its wave function and...
Concepts of quantum theory and bohmian interpretation of quantum theoryThis demonstration shows the...
Concepts of quantum theory and bohmian interpretation of quantum theoryThis demonstration shows the...