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首页> 外文期刊>Physics of plasmas >High brightness, X-band photoinjector for the production of coherent synchrotron radiation
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High brightness, X-band photoinjector for the production of coherent synchrotron radiation

机译:高亮度X波段光电注入器,用于产生相干同步辐射

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摘要

Linear colliders, future electron acceleration concepts, and short pulse, ultrawideband millimeter-wave sources all require bright electron beams. Photoinjectors have demonstrated the ability to produce relativistic electron beams with low emittance and energy spread. The system described herein combines state-of-the-art capabilities in the laser and rf systems, advanced photocathode materials? and new concepts for synchronization. Phase jitter has been measured in detail, and schemes for alleviating this problem have undergone initial proof-of-principle testing. Direct mode locking of a multiple quantum well Al:GaAs solid-state laser oscillator by an rf signal sampled from within a high-power rf accelerator cavity was demonstrated for the first time. Characterization of the electron beam produced by the system is presented. The linear electron accelerator system is comprised of a 1.5 cell side-wall coupled standing wave accelerator structure, driven by a 20 MW Stanford Linear Accelerator Center (SLAC) Klystron operating at 8.548 GHz, a Ti:sapphire laser oscillator, and a chirped pulse Ti:sapphire laser amplifier. (C) 1998 American Institute of Physics. [References: 26]
机译:线性对撞机,未来的电子加速概念以及短脉冲超宽带毫米波源都需要明亮的电子束。光电注入器已显示出产生相对论电子束的能力,该相对论电子束具有低发射率和低能量扩散。本文所述的系统结合了激光和射频系统中最先进的功能,先进的光电阴极材料?以及同步的新概念。已经详细测量了相位抖动,缓解此问题的方案已经过初步的原理验证测试。首次展示了通过从高功率射频加速器腔内采样的射频信号直接锁定多量子阱Al:GaAs固态激光振荡器。介绍了系统产生的电子束的特性。线性电子加速器系统由一个1.5单元侧壁耦合驻波加速器结构组成,该结构由工作于8.548 GHz的20 MW斯坦福线性加速器中心(SLAC)速调管,一个Ti:蓝宝石激光振荡器和一个pulse脉冲Ti组成。 :蓝宝石激光放大器。 (C)1998美国物理研究所。 [参考:26]

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