Semianalytical findings for the dynamics of the charged particle in the Störmer problem

Author:

Ershkov Sergey12ORCID,Prosviryakov Evgeniy34,Leshchenko Dmytro5,Burmasheva Natalya3

Affiliation:

1. Plekhanov Russian University of Economics Moscow Russia

2. Sternberg Astronomical Institute M.V. Lomonosov's Moscow State University Moscow Russia

3. Institute of Engineering Science UB RAS Ural Federal University Ekaterinburg Russia

4. Ural Federal University Ekaterinburg Russia

5. Odessa State Academy of Civil Engineering and Architecture Odessa Ukraine

Abstract

In this semianalytical research, we present a new ansatz in solving the Störmer problem with numerical findings in graphical representations of solutions where dynamics of the charged particle in the classical dipole magnetic field (here, Earth's magnetic field) was investigated in detail. We have fully solved the Störmer problem for partial class of the charged particle's motion close to the equatorial plane of Earth; this result is the main important theoretical finding presented here with prescribed symmetry. Aforementioned motions, determined by Lorentz force in nonrelativistic case, thereby are explored in polar coordinates to present them in a quasi‐periodic motions in a general case (in equatorial plane of Earth). Thus, the system of momentum equations has been successfully solved numerically or semianalytically in each case and the resulting semianalytical solving algorithm can clarify the quasi‐periodic structure of such family of solutions (with reduction of their geometric symmetry around the Earth in an equatorial plane).

Publisher

Wiley

Subject

General Engineering,General Mathematics

Reference40 articles.

1. Existence of Electromagnetic-Hydrodynamic Waves

2. Solving procedure for the dynamics of charged particle in variable (time‐dependent) electromagnetic field;Ershkov S. V.;Zeitschrift für angewandte Mathematik und Physik (The Journal of Applied Mathematics and Physics),2020

3. Dynamics of a charged particle in electromagnetic field with joule effect;Ershkov S. V.;Romanian Report Phys,2020

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