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Toward a nonlinear theory of acceleration of charged particles in a linearly polarized EH-ubitron field

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Abstract

The motion of charged particles in a linearly polarized EH-ubitron field with sinusoidal time dependence of the variable component of the magnetic field is investigated. It is shown that, depending on the parameters of the system and the initial conditions of entry of the particle into the EH-field region, three different types of motion are possible: ballistic motion, capture in the vicinity of one of the maxima of the magnetic field, and escape of particles from the EH-field region. An analytical expression is found for the criterion determining the type of motion of the particles, along with analytical solutions for the energy of the particles in the approximation of slow variation of the magnetic field amplitude in time. Peculiarities of the motion of the particles in EH fields with arbitrary rate of change of the magnetic field amplitude in time are investigated numerically.

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Zh. Tekh. Fiz. 69, 87–93 (January 1999)

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Krut’ko, O.B. Toward a nonlinear theory of acceleration of charged particles in a linearly polarized EH-ubitron field. Tech. Phys. 44, 79–84 (1999). https://doi.org/10.1134/1.1259537

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  • DOI: https://doi.org/10.1134/1.1259537

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