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Development of photoinjector RF cavity for high-power CW FEL

机译:高功率CW FEL的光屏RF腔开发

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An RF photoinjector capable of producing high continuous average current with low emittance and energy spread is a key enabling technology for high-power CW FEL. A preliminary design of the first, and the most challenging, section of a 700-MHz CW RF normal-conducting photoinjector—a 2.5-cell, pi-mode cavity with solenoidal magnetic field for emittance compensation—is completed. Beam dynamics simulations demonstrate that this cavity with an electric field gradient of 7 MV/m will produce an electron beam at 2.7 MeV with the transverse rms emittance 7 mm mrad at 3 nC of charge per bunch. Electromagnetic field computations combined with a thermal and stress analysis show that the challenging problem of cavity cooling can be successfully resolved. We are in the process of building a 100-mA (3 nC of bunch charge at 33.3 MHz bunch repetition rate) photoinjector for demonstration purposes. Its performance parameters will enable a robust 100-kW-class FEL operation with electron beam energy below 100 MeV. The design is scalable to higher power levels by increasing the electron bunch repetition rate and provides a path to a MW-class amplifier FEL.
机译:能够产生具有低辐射和能量扩散高的连续的平均电流的RF光阴是一个关键技术用于高功率CW FEL。所述第一的初步设计,和一个700-MHz的CW RF正常传导光阴-2.5细胞,PI-模式腔与螺线管磁场中最具挑战性,部分,用于发射率补偿完毕。束动力学模拟表明,该空腔具有7 MV / m的电场梯度将在2.7 MeV的产生的电子束与横向发射率有效值7毫米毫弧度以每一堆电荷3 NC。电磁场计算用热和应力分析表明空腔冷却的挑战性的问题,可以成功地解决组合。我们是在建立一个100毫安(在33.3兆赫一堆重复率束电荷的3 NC)光阴用于演示目的的过程。其性能参数将使低于100兆电子伏的电子束能量鲁棒100千瓦级FEL操作。该设计是可扩展到更高的功率水平通过增加电子束的重复率,并且提供到一个MW级放大器FEL的路径。

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