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Problemy Fiziki, Matematiki i Tekhniki (Problems of Physics, Mathematics and Technics), 2019, Issue 1(38), Pages 13–15 (Mi pfmt615)  

PHYSICS

Speenless particle motion equations in the electromagnetic field considering dipole polarizability

V. V. Andreev, N. V. Maksimenko, O. M. Deryuzhkova

F. Scorina Gomel State University
References:
Abstract: Using the relativistic Lagrange–Euler equations, the equations of motion for a charged structural particle of a spin 0 in the electromagnetic field are obtained. The Lagrangian of the electromagnetic field interaction with a structural spinless particle contains dipole polarizabilities that are consistent with polarizabilities which are included in the amplitude of Compton scattering on a spinless particle. This Lagrangian and the amplitude are obtained based on the gauge-invariant approach and on the solution of electrodynamic equations using the Green function method.
Keywords: charged structural spinless particle, dipole polarizabilities, Lagrangian, amplitude of Compton scattering.
Received: 09.02.2019
Document Type: Article
UDC: 539.12
Language: Russian
Citation: V. V. Andreev, N. V. Maksimenko, O. M. Deryuzhkova, “Speenless particle motion equations in the electromagnetic field considering dipole polarizability”, PFMT, 2019, no. 1(38), 13–15
Citation in format AMSBIB
\Bibitem{AndMakDer19}
\by V.~V.~Andreev, N.~V.~Maksimenko, O.~M.~Deryuzhkova
\paper Speenless particle motion equations in the electromagnetic field considering dipole polarizability
\jour PFMT
\yr 2019
\issue 1(38)
\pages 13--15
\mathnet{http://mi.mathnet.ru/pfmt615}
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