Quantum Self-Frictional Relativistic Nucleoseed Spinor-Type Tensor Field Theory of Nature

Author:

Guseinov I. I.1ORCID

Affiliation:

1. Department of Physics, Faculty of Arts and Sciences, Onsekiz Mart University, Çanakkale, Turkey

Abstract

For study of quantum self-frictional (SF) relativistic nucleoseed spinor-type tensor (NSST) field theory of nature (SF-NSST atomic-molecular-nuclear and cosmic-universe systems) we use the complete orthogonal basis sets of22s+1-component column-matrices type SFΨnljmjδs-relativistic NSST orbitals (Ψδs-RNSSTO) and SFXnljmjs-relativistic Slater NSST orbitals (Xs-RSNSSTO) through theψnlmlδ-nonrelativistic scalar orbitals (ψδ-NSO) andχnlml-nonrelativistic Slater type orbitals (χ-NSTO), respectively. Hereδ=plorδ=αandpl=2l+2-α,  αare the integer(α=α,-<α2) or noninteger(αα,-<α<3) SF quantum numbers, wheres=0,1/2,1,3/2,2,. We notice that the nonrelativisticψδ-NSO andχ-NSTO orbitals themselves are obtained from the relativisticΨδs-RNSSTO andXs-RSNSSTO functions fors=0, respectively. The column-matrices-type SFY1jmjls-RNSST harmonics (Y1ls-RNSSTH) andY2jmjls-modified NSSTH (Y2ls-MNSSTH) functions for arbitrary spinsintroduced by the author in the previous papers are also used. The one- and two-center one-range addition theorems forψδ-NSO and nonintegernχ-NSTO orbitals are presented. The quantum SF relativistic nonperturbative theory forVnljmjδ-RNSST potentials (Vδ-RNSSTP) and their derivatives is also suggested. To study the transportations of mass and momentum in nature the quantum SF relativistic NSST gravitational photon (gph) withs=1is introduced.

Publisher

Hindawi Limited

Subject

Nuclear and High Energy Physics

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