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    • 23. 发明公开
    • Pulse power linac
    • 线人Impulsleistungsbeschleuniger。
    • EP0359732A2
    • 1990-03-21
    • EP89850299.2
    • 1989-09-13
    • HARRIS BLAKE CORPORATION
    • Villa, Francesco
    • H05H9/00H05H7/02
    • H05H5/02H05H7/00H05H9/02
    • A linear accelerator (30 in Fig. 2) for charged particles is constructed of a plurality of transmission line sections (41-1, 42-1)---(41-5, 42-5) that extend between a power injection region (36) and an accelerating region (37). Each line section (41-1, 42-­1)---(41-5, 42-5) is constructed of spaced plate-like conductors and is coupled to an accelerating gap located at the accelerating region (37). Each gap is formed between a pair of apertured electrodes, with all of the electrode apertures (43) being aligned along a particle accelerating path (24). The accelerating gaps are arranged in series, and at the injection region (36) the line sections (41-1, 42-1)---(41-5, 42-5) are connected in parallel. At the injection region (36) a power pulse is applied simultaneously to all line sections (41-1, 42-1)---(41-5, 42-5). The line sections (41-1, 42-1)---­(41-5, 42-5) are graduated in length so that the pulse reaches the gaps in a coordinated sequence whereby pulse energy is applied to particles as they reach each of the gaps along the accelerating path (24).
    • 用于带电粒子的线性加速器(图2中的30)由多个传输线段(41-1,42-1)---(41-5,42-5)构成,其在功率注入区域 (36)和加速区域(37)。 每个线段(41-1,42-1)---(41-5,42-5)由间隔开的板状导体构成,并且耦合到位于加速区域(37)的加速间隙。 每个间隙形成在一对有孔电极之间,其中所有电极孔(43)沿着粒子加速路径(24)排列。 加速间隙串联布置,在注入区域(36)处,线段(41-1,42-1)---(41-5,42-5)并联连接。 在注入区域(36),同时向所有线路段(41-1,42-1)---(41-5,42-5)施加功率脉冲。 线段(41-1,42-1)---(41-5,42-5)的长度分级,使得脉冲以协调的顺序到达间隙,由此当脉冲能量到达每个时,脉冲能量被施加到粒子 沿着加速路径(24)的间隙。