Relaxation to quantum equilibrium for Dirac fermions in the de Broglie–Bohm pilot-wave theory
From MaRDI portal
Publication:5345940
DOI10.1098/rspa.2011.0549zbMath1364.81138arXiv1108.5496OpenAlexW3100036621MaRDI QIDQ5345940
Publication date: 7 June 2017
Published in: Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1108.5496
Related Items (4)
Extreme quantum nonequilibrium, nodes, vorticity, drift and relaxation retarding states ⋮ Perturbations and quantum relaxation ⋮ Testing de Broglie's double solution in the mesoscopic regime ⋮ Beyond the Born rule in quantum gravity
Cites Work
- Quantum equilibrium and the origin of absolute uncertainty
- Properties of the trajectories in Bohmian mechanics
- The zig-zag road to reality
- Astrophysical and cosmological tests of quantum theory
- Quantum non-equilibrium and relaxation to equilibrium for a class of de Broglie–Bohm-type theories
- Time scales for dynamical relaxation to the Born rule
- Dynamical origin of quantum probabilities
- A Suggested Interpretation of the Quantum Theory in Terms of "Hidden" Variables. I
- Comments on an Article of Takabayasi conserning the Formulation of Quantum Mechanics with Classical Pictures
This page was built for publication: Relaxation to quantum equilibrium for Dirac fermions in the de Broglie–Bohm pilot-wave theory