On Quantization of Field Theories in Polymomentum Variables
Abstract
Polymomentum canonical theories, which are manifestly covariant multi-parameter generalizations of the Hamiltonian formalism to field theory, are considered as a possible basis of quantization. We arrive at a multi-parameter hypercomplex generalization of quantum mechanics to field theory in which the algebra of complex numbers and a time parameter are replaced by the space-time Clifford algebra and space-time variables treated in a manifestly covariant fashion. The corresponding covariant generalization of the Schroedinger equation is shown to be consistent with several aspects of the correspondence principle such as a relation to the De Donder-Weyl Hamilton-Jacobi theory in the classical limit and the Ehrenfest theorem. A relation of the corresponding wave function (over a finite dimensional configuration space of field and space-time variables) to the Schroedinger wave functional in quantum field theory is examined in the ultra-local approximation.
Keywords
Cite
@article{arxiv.hep-th/9811016,
title = {On Quantization of Field Theories in Polymomentum Variables},
author = {I. V. Kanatchikov},
journal= {arXiv preprint arXiv:hep-th/9811016},
year = {2010}
}
Comments
13 pages, uses aipproc.sty and aipproc.cls. To appear in "Particles, Fields and Gravitation", Proc. Int. Conf. Lodz 1998 (AIP Proceedings, 1998)