Effects of entanglement on vortex dynamics in the hydrodynamic representation of quantum mechanics
DOI10.1142/S0219749920500306zbMath1457.81017arXiv1902.08400OpenAlexW3099164710MaRDI QIDQ5149399
Publication date: 11 February 2021
Published in: International Journal of Quantum Information (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1902.08400
vortex dynamicsentanglementtime-dependent variational principleMadelung's hydrodynamic representationnonintegrable phase
Vortex flows for incompressible inviscid fluids (76B47) Finite element, Rayleigh-Ritz and Galerkin methods for boundary value problems involving PDEs (65N30) Stochastic mechanics (including stochastic electrodynamics) (81P20) Variational principles of physics (49S05) Quantum coherence, entanglement, quantum correlations (81P40)
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Cites Work
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- On entropy production in the Madelung fluid and the role of Bohm's potential in classical diffusion
- The Madelung picture as a foundation of geometric quantum theory
- On the initial value problem for the Madelung hydrodynamic equations
- SPIN AND MADELUNG FLUID
- Vortex, Spin and Triad for Quantum Mechanics of Spinning Particle.I: General Theory
- Maximal Violation of Bell’s Inequalities for Continuous Variable Systems
- Quantum information with continuous variables
- A trajectory-based understanding of quantum interference
- Quantised singularities in the electromagnetic field,
- Quantum Computation over Continuous Variables
- Recursive formulation of Madelung continuity equation leads to propagation equation
- Perfect fluid theory and its extensions
- Continuous Variable Quantum Information: Gaussian States and Beyond
- Vortex dynamics and their interactions in quantum trajectories
- The Theory of Magnetic Poles
- Model of the Causal Interpretation of Quantum Theory in Terms of a Fluid with Irregular Fluctuations
- Bohmian quantum theory of motion for particles with position-dependent effective mass
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