Formation of a Rotating Relativistic Electron Beam Using a Narrow Magnetic Cusp Field
Formation of a rotating, relativistic electron beam with properties suitable for a circular free electron laser has been studied. The rotating, relativistic electron beam is generated by the method of injecting a straight-moving, hollow, relativistic electron beam (typical energy 500 keV) into a mag...
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Veröffentlicht in: | Japanese Journal of Applied Physics 1991, Vol.30 (1B), p.L128 |
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container_issue | 1B |
container_start_page | L128 |
container_title | Japanese Journal of Applied Physics |
container_volume | 30 |
creator | Mizuno, Takahide Sekita, Hitoshi Kitora, Masakazu Naito, Yoshihiko Hirobumi Saito, Hirobumi Saito Tadashi Sekiguchi, Tadashi Sekiguchi |
description | Formation of a rotating, relativistic electron beam with properties suitable for a circular free electron laser has been studied. The rotating, relativistic electron beam is generated by the method of injecting a straight-moving, hollow, relativistic electron beam (typical energy 500 keV) into a magnetic cusp. By decreasing the axial transition width of the cusp, the beam off-centering motion is suppressed and the beam current is increased by a factor of 4 (from 50 A to 200 A). |
doi_str_mv | 10.1143/JJAP.30.L128 |
format | Article |
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The rotating, relativistic electron beam is generated by the method of injecting a straight-moving, hollow, relativistic electron beam (typical energy 500 keV) into a magnetic cusp. 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The rotating, relativistic electron beam is generated by the method of injecting a straight-moving, hollow, relativistic electron beam (typical energy 500 keV) into a magnetic cusp. By decreasing the axial transition width of the cusp, the beam off-centering motion is suppressed and the beam current is increased by a factor of 4 (from 50 A to 200 A).</abstract><doi>10.1143/JJAP.30.L128</doi></addata></record> |
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source | IOP Publishing Journals; Institute of Physics (IOP) Journals - HEAL-Link |
title | Formation of a Rotating Relativistic Electron Beam Using a Narrow Magnetic Cusp Field |
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