Conformal group of transformations of the quantum field operators in the momentum space and the five dimensional Lagrangian approach
arXiv:hep-th/0504030
Abstract
Conformal group of transformations in the momentum space, consisting of translations , rotations , dilatation and inversion of the four-momentum , is used for the five dimensional generalization of the equations of motion for the interacting massive particles. It is shown, that the -matrix of the charged and the neutral particles scattering is invariant under translations in a four-dimensional momentum space . In the suggested system of equations of motion, the one-dimensional equations over the fifth coordinate are separated and these one dimensional equations have the form of the evaluation equations with . The important property of the derived five dimensional equations of motion is the explicit separation of the parts of these equations according to the inversion , where is a scale constant.
LATEX, 33 pages