Published August 11, 2003 | Version v1
Journal article

Spin waves as metric in a kinetic space-time

Creators

Description

(1) A wave equation is derived from the kinetic equations governing media with rotational as well as translational degrees of freedom. In this wave the fluctuating quantity is a vector, the bulk spin. The transmission is similar to compressive waves but propagation is possible even in the limit of incompressibility, where such disturbances could become dominant. (2) In this context a kinetic theory of space-time is introduced, in which hypothetical constituents of the space-time manifold possess such a rotational degree of freedom (spin). Physical fields (i.e., electromagnetic or gravitational) in such a theory are represented as moments of a statistical distribution of these constituents, as in the techniques of fluid mechanics. The spin wave equation from (1) is treated as a candidate for governing light and metric. Such a theory duplicates to first order Maxwell's equations of electromagnetism, Schroedinger's equation for the electron, and the Lorentz transformations of special relativity. Slight deviations from the classical approach are predicted and should be experimentally verifiable

Additional details

Identifiers

DOI
10.1016/S0375-9601(03)00947-2;
arXiv
arXiv:gr-qc/0304063v5;
PII
S0375960103009472;

Publishing Information

Journal Title
Physics Letters. A
Journal Volume
314
Journal Issue
5-6
Journal Page Range
p. 472-478
ISSN
0375-9601
CODEN
PYLAAG

Optional Information

Copyright
Copyright (c) 2003 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.