English

Model conception of quantum phenomena: logical structure and investigation methods

General Physics 2007-05-23 v2

Abstract

One can construct the model conception of quantum phenomena (MCQP) which relates to the axiomatic conception of quantum phenomena (ACQP), (i.e. to the conventional quantum mechanics) in the same way, as the statistical physics relates to thermodynamics. Such a possibility is based on a new conception of geometry, which admits one to construct such a deterministic space-time geometry, where motion of free particles is primordially stochastic. The space-time geometry can be chosen in such a way that statistical description of random particle motion coincides with the quantum description. Transition from ACQP to MCQP is a result of correction of some mistakes in the foundation of ACQP. Methods of MCQP in investigation of quantum phenomena appear to be more subtle and effective than, that of ACQP. For instance, investigation of the free Dirac equation in framework of MCQP shows that the Dirac particle is in reality a rotator, i.e. two particles rotating around their common center of inertia. In the framework of MCQP one can discover the force field, responsible for pair production, that is impossible in the framework of ACQP.

Keywords

Cite

@article{arxiv.physics/0310050,
  title  = {Model conception of quantum phenomena: logical structure and investigation methods},
  author = {Yuri A. Rylov},
  journal= {arXiv preprint arXiv:physics/0310050},
  year   = {2007}
}

Comments

25 pages, 2 figures, Consideration of logical structure is added, correction of misprints