2019Доклады Академии наукOpen access

Emission spectrum and trajectory of a charged particle in the field of an inhomogeneous electromagnetic wave

V. B. Lapshin, A. A. Skubachevskiу, А. V. Belinsky, А. С. Бугаев

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Abstract

Using the example of a non-uniform electromagnetic wave created by superposition of two plane monochromatic electromagnetic waves that are arbitrarily directed relative to each other, an approach is demonstrated that allows one to simulate a wide spectrum of electromagnetic waves. The complete system of equations describing the motion of an electron in a non-uniform electromagnetic field is solved numerically. The features of the trajectory and emission spectrum of the electron were found and investigated.

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What this paper is about

Using the example of a non-uniform electromagnetic wave created by superposition of two plane monochromatic electromagnetic waves that are arbitrarily directed relative to each other, an approach is demonstrated that allows one to simulate a wide spectrum of electromagnetic waves. The complete system of equations describing the motion of an electron in a non-uniform electromagnetic field is solved numerically. The features of the trajectory and emission spectrum of the electron were found and investigated.

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Available abstract

Using the example of a non-uniform electromagnetic wave created by superposition of two plane monochromatic electromagnetic waves that are arbitrarily directed relative to each other, an approach is demonstrated that allows one to simulate a wide spectrum of electromagnetic waves. The complete system of equations describing the motion of an electron in a non-uniform electromagnetic field is solved numerically. The features of the trajectory and emission spectrum of the electron were found and investigated.

Key concepts: Physics, Monochromatic electromagnetic plane wave, Electromagnetic radiation, Superposition principle, Electromagnetic field, Electromagnetic spectrum, Monochromatic color, Plane wave

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