The Quantum as an Emergent System
arXiv:1205.3393 · doi:10.1088/1742-6596/361/1/012008
Abstract
Double slit interference is explained with the aid of what we call "21stcentury classical physics". We model a particle as an oscillator ("bouncer") in a thermal context, which is given by some assumed "zero-point" field of the vacuum. In this way, the quantum is understood as an emergent system, i.e., a steady-state system maintained by a constant throughput of (vacuum) energy. To account for the particle's thermal environment, we introduce a "path excitation field", which derives from the thermodynamics of the zero-point vacuum and which represents all possible paths a particle can take via thermal path fluctuations. The intensity distribution on a screen behind a double slit is calculated, as well as the corresponding trajectories and the probability density current. Further, particular features of the relative phase are shown to be responsible for nonlocal effects not only in ordinary quantum theory, but also in our classical approach.
24 pages, 2 figures, based on a talk given at "Emergent Quantum Mechanics (Heinz von Foerster Conference 2011)", http://www.univie.ac.at/hvf11/congress/EmerQuM.html
References in corpus (8)
- The Vacuum Fluctuation Theorem: Exact Schroedinger Equation via Nonequilibrium Thermodynamics
- On the Thermodynamic Origin of the Quantum Potential
- Emergent Quantum Mechanics and Emergent Symmetries
- Four questions for quantum-classical hybrid theory
- General linear dynamics - quantum, classical or hybrid
- Emergence and Collapse of Quantum Mechanical Superposition: Orthogonality of Reversible Dynamics and Irreversible Diffusion
- Classical Simulation of Double Slit Interference via Ballistic Diffusion
- Quantum features derived from the classical model of a bouncer-walker coupled to a zero-point field
Cited by in corpus (5)
- Classical Simulation of Double Slit Interference via Ballistic Diffusion
- Quantum features derived from the classical model of a bouncer-walker coupled to a zero-point field
- Modeling double slit interference via anomalous diffusion: independently variable slit widths
- Emergent quantum mechanics as a classical, irreversible thermodynamics
- A Classical Framework for Nonlocality and Entanglement