Published February 1987 | Version v1
Journal article

Nonrelativistic Schroedinger equation in quasi-classical theory

  • 1. Univ. of Melbourne, Parkville, Australia

Description

The author has recently proposed a quasi-classical theory of particles and interactions in which particles are pictured as extended periodic disturbances in a universal field chi(x,t), interacting with each other via nonlinearity in the equation of motion for chi. The present paper explores the relationship of this theory to nonrelativistic quantum mechanics; as a first step, it is shown how it is possible to construct from chi a configuration-space wave function Psi(x1, X2, t), and that the theory requires that Psi satisfy the two-particle Schroedinger equation in the case where the two particles are well separated from each other. This suggests that the multiparticle Schroedinger equation can be obtained as a direct consequence of the quasi-classical theory without any use of the usual formalism (Hilbert space, quantization rules, etc.) of conventional quantum theory and in particular without using the classical canonical treatment of a system as a crutch theory which has subsequently to be quantized. The quasi-classical theory also suggests the existence of a preferred absolute gauge for the electromagnetic potentials

Additional details

Publishing Information

Journal Title
Found. Phys.
Journal Volume
17
Journal Issue
2
Series
Found. Phys.
Journal Page Range
123-147
ISSN
0015-9018
CODEN
FNDPA