Spinless Particle with Darwin–Cox Structure in an External Coulomb Field

Author:

Koral’kov A. D.1,Ovsiyuk E. M.1,Kisel V. V.2,Chichurin A. V.3,Voynova Ya. A.4,Red’kov V. M.4

Affiliation:

1. Mozyr State Pedagogical University named after I.P. Shamyakin

2. Belarus State University of Informatics and Radio-electronics

3. The John Paul II Catholic University of Lublin

4. B. I. Stepanov Institute of Physics of NAS of Belarus

Abstract

Generalized Klein–Fock–Gordon equation for a spinless particle with the Darwin–Cox structure, which takes into account distribution of the electric charge of a particle inside a finite spherical region is studied in presence of an external Coulomb field. There have been constructed exact Frobenius type solutions of the derived equations, convergence of the relevant power series with 8-term recurrent relations has been studied. As an analytical quantization rule is taken the so-called transcendency conditions. It provides us with a 4-th order algebraic equation with respect to energy values, which has four sets of roots. One set of roots, 0 < En;k < 1, depending on the angular momentum n = 0; 1; 2; : : : and the main quantum number n = 0; 1; 2; : : : may be interpreted as corresponding to some bound states of the particle in a Coulomb field. In the same manner, a generalized nonrelativistic Schr¨odinger equation for such a particle is studied, the final results are similar.

Publisher

Belarusian State University

Subject

Mathematical Physics,Statistical and Nonlinear Physics

Reference9 articles.

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3. V. V. Kisel, E. M. Ovsiyuk, O. V. Veko, Y. A. Voynova, V. Balan, V. M. Red’kov. Elementary Particles with Internal Structure in External Fields. Vols I, II. Physical Problems. (Nova Science Publishers Inc., New York, 2018).

4. E. M. Ovsiyuk. Spin zero Cox’s particle with an intrinsic structure: general analysis in external electromagnetic and gravitational fields. Ukr. J. Phys. 60, 485–496 (2015).

5. E. M. Ovsiyuk, O. V. Veko, K. V. Kazmerchuk. Scalar particle with intrinsic structure in electromagnetic field in curved space-time. Problems of Physics, Mathematics and Technics. 3(20), 32–36 (2014).

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