We provide a general theory for the structure of the quantum flow near three-dimensional (3D) nodal lines, i.e., one-dimensional loci where the 3D wave function becomes equal to zero. In suitably defined coordinates (comoving with the nodal line) the generic structure of the flow implies the formation of 3D quantum vortices. We show that such vortices are accompanied by nearby invariant lines of the comoving quantum flow, called X lines, which are normally hyperbolic. Furthermore, the stable and unstable manifolds of the X lines produce chaotic scatterings of nearby quantum (Bohmian) trajectories, thus inducing an intricate form of the quantum current in the neighborhood of each 3D quantum vortex. Generic formulas describing the structure a...
The motion of a single vortex is able to originate chaos in the quantum trajectories defined in Bohm...
Knowlegde on quantum and chaos theoryThe causal interpretation of quantum theory developed by David...
Knowlegde on quantum and chaos theoryThe causal interpretation of quantum theory developed by David...
We provide a general theory for the structure of the quantum flow near three-dimensional (3D) nodal ...
We study the 3-d Bohmian trajectories of a quantum system of three harmonic oscillators. We focus on...
The motion of a single vortex originates chaos in the quantum fluid defined in Bohm's interpretation...
The motion of a single vortex originates chaos in the quantum fluid defined in Bohm\u27s interpretat...
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...
Vortices are known to play a key role in many important processes in physics and chemistry. Here, we...
The infinite superpositions of random plane waves are known to be threaded with vortex line singular...
The infinite superpositions of random plane waves are known to be threaded with vortex line singular...
Quantum turbulence, easily generated in superfluid helium, consists of a disordered tangle of thin, ...
Quantum turbulence, easily generated in superfluid helium, consists of a disordered tangle of thin, ...
The motion of a single vortex is able to originate chaos in the quantum trajectories defined in Bohm...
The motion of a single vortex is able to originate chaos in the quantum trajectories defined in Bohm...
Knowlegde on quantum and chaos theoryThe causal interpretation of quantum theory developed by David...
Knowlegde on quantum and chaos theoryThe causal interpretation of quantum theory developed by David...
We provide a general theory for the structure of the quantum flow near three-dimensional (3D) nodal ...
We study the 3-d Bohmian trajectories of a quantum system of three harmonic oscillators. We focus on...
The motion of a single vortex originates chaos in the quantum fluid defined in Bohm's interpretation...
The motion of a single vortex originates chaos in the quantum fluid defined in Bohm\u27s interpretat...
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...
Vortices are known to play a key role in many important processes in physics and chemistry. Here, we...
The infinite superpositions of random plane waves are known to be threaded with vortex line singular...
The infinite superpositions of random plane waves are known to be threaded with vortex line singular...
Quantum turbulence, easily generated in superfluid helium, consists of a disordered tangle of thin, ...
Quantum turbulence, easily generated in superfluid helium, consists of a disordered tangle of thin, ...
The motion of a single vortex is able to originate chaos in the quantum trajectories defined in Bohm...
The motion of a single vortex is able to originate chaos in the quantum trajectories defined in Bohm...
Knowlegde on quantum and chaos theoryThe causal interpretation of quantum theory developed by David...
Knowlegde on quantum and chaos theoryThe causal interpretation of quantum theory developed by David...