Abstract
The scattering of electrons by aluminum, copper, and lead foils, as well as by bimetallic aluminum-lead and aluminum-copper foils, has been studied experimentally. A microtron with an energy of particles of 7.4 MeV has been used as a source of electrons. The beam of particles incident on a target at small angles is split into particles reflected from the foil, which constitute a reflected beam, and particles crossing the foil, which constitute a refracted beam. The effect of the material and thickness of the foil, as well as the angle between the initial trajectory of the beam and the plane of the target, on the direction of motion and the angular divergence of the beam crossing the foil and the beam reflected from the foil has been analyzed. Furthermore, the effect of the sequence of metal layers in bimetallic films on the angles of refraction and reflection of the beam has been examined.
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Original Russian Text © A.V. Serov, I.A. Mamonov, A.V. Kol’tsov, 2015, published in Zhurnal Eksperimental’noi i Teoreticheskoi Fiziki, 2015, Vol. 148, No. 4, pp. 658–664.
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Serov, A.V., Mamonov, I.A. & Kol’tsov, A.V. Angular distributions of reflected and refracted relativistic electron beams crossing a thin planar target at a small angle to its surface. J. Exp. Theor. Phys. 121, 572–577 (2015). https://doi.org/10.1134/S1063776115100143
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DOI: https://doi.org/10.1134/S1063776115100143