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Transverse Beam Envelope Measurements and the Limitations of the 3-Screen Emittance Method for Space-Charge Dominated Beams

机译:横向电荷包络束的横向束包络测量和三屏发射法的局限性

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摘要

In its normal mode of operation the Argonne Wakefield Accelerator Facility uses a high charge (10-100 nC), short pulse (3-5 psec) drive bunch to excite high-gradient accelerating fields in various slow-wave structures. To generate this bunch, we designed a 1.5 cell, L-band, rf photocathode gun with an emittance compensating solenoid to give optimal performance at high-charge; it has recently completed commissioning. More recently, we have begun to investigate the possibility of using this gun in a high-brightness, low-charge operating mode, with charge equal to approximately 1 nC, for high-precision measurements of wakefields. Two related measurements are reported on in this paper: (1) measurements of the transverse beam envelope are compared to predictions from the beam dynamics code PARMELA; and (2) investigations into the use of a modified 3-screen emittance measurement method that uses a beam envelope model that includes both space-charge and emittance effects. Both measurements were made for the 1 nC, 8 MeV beam in the drift region directly following the rf photocathode gun.
机译:在正常操作模式下,Argonne Wakefield加速器设备使用高电荷(10-100 nC),短脉冲(3-5 ps)驱动束来激发各种慢波结构中的高梯度加速场。为了产生这一束,我们设计了一个1.5单元,L带,rf射频光电阴极枪,带有发射补偿螺线管,以在高充电时提供最佳性能。它最近已完成调试。最近,我们开始研究在高亮度,低电荷工作模式下使用此枪的可能性,该模式的电荷等于大约1 nC,用于高精度的尾流测量。本文报道了两个相关的测量结果:(1)将横向光束包络的测量结果与光束动力学代码PARMELA的预测进行比较; (2)研究使用改良的3屏发射率测量方法,该方法使用包括空间电荷和发射率效应的光束包络模型。两种测量都是在紧接射频光电阴极枪之后的漂移区域中对1 nC,8 MeV光束进行的。

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