Feasible Design of a Free Electron Laser Based on the Smith–Parsell Effect / A. N. Aleinik [et al.]

Уровень набора: Russian Physics JournalАльтернативный автор-лицо: Aleinik, A. N., physicist, Senior researcher of Tomsk Polytechnic University, Candidate of physical and mathematical science, 1944-, Aleksandr Nikonorovich;Aryshev, A. S.;Kalinin, B. N.;Naumenko, G. A., physicist, senior research fellow of Tomsk Polytechnic University, 1947-, Gennadiy Andreevich;Potylitsyn, A. P., Russian physicist, Professor of the TPU, 1945-, Alexander Petrovich;Saruev, G. A., physicist, Leading engineer of Tomsk Polytechnic University, Candidate of physical and mathematical sciences, 1946-, Gennady Alekseevich;Chefonov, O. V.Язык: английский.Страна: .Резюме или реферат: A free electron laser design is considered in which coherent radiation is generated during the flight of a bunched electron beam near a periodic metal target (Smith–Parsell radiation). If the target (array) is placed in a special resonator, optical feedback can be realized. It is proposed to use an array made of thin conductive strips separated with vacuum gaps, since the radiation output in this case is much higher than that attainable with conventional arrays. Varying the array parameters, one can choose the necessary direction and required spectral distribution of the Smith–Parsell radiation. When radiation is generated in the direction normal to the trajectory of the electron beam, the array acts as one of the resonator mirrors.Примечания о наличии в документе библиографии/указателя: [References: p. 99 (12 tit.)].Аудитория: .Тематика: электронный ресурс | труды учёных ТПУ | radiation | излучение | излучение Смита-Парселла Ресурсы он-лайн:Щелкните здесь для доступа в онлайн
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[References: p. 99 (12 tit.)]

A free electron laser design is considered in which coherent radiation is generated during the flight of a bunched electron beam near a periodic metal target (Smith–Parsell radiation). If the target (array) is placed in a special resonator, optical feedback can be realized. It is proposed to use an array made of thin conductive strips separated with vacuum gaps, since the radiation output in this case is much higher than that attainable with conventional arrays. Varying the array parameters, one can choose the necessary direction and required spectral distribution of the Smith–Parsell radiation. When radiation is generated in the direction normal to the trajectory of the electron beam, the array acts as one of the resonator mirrors

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