首页> 外文期刊>Physical Review. Accelerators and Beams >span class="aps-inline-formula"math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"miC/mi/math/span-band disk-loaded-type accelerating structure for a high acceleration gradient and high-repetition-rate operation
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span class="aps-inline-formula"math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"miC/mi/math/span-band disk-loaded-type accelerating structure for a high acceleration gradient and high-repetition-rate operation

机译:class =“ aps-inline-formula”> <数学xmlns =“ http://www.w3.org/1998/Math/MathML” display =“ inline”> C 带盘加载式加速结构,可实现高加速度梯度和高重复率操作

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A high-acceleration-gradient linear accelerator (LINAC) for an x-ray free electron laser (XFEL) offers the advantages of a short accelerator length and low construction costs. In addition, the high pulse repetition rate of the LINAC, which can drive multiple x-ray beam lines, provides additional user opportunities for experiments involving XFEL. A $C$-band disk-loaded-type accelerating structure was developed to achieve a high acceleration gradient of $50ext{ }ext{ }mathrm{MV}/mathrm{m}$ and an rf-pulse repetition rate of 120 pps, which is twice as high as that of the XFEL facility, SACLA (60 pps). The structure has a quasiconstant gradient and a traveling wave type with an accelerating mode of $mathrm{TM}01ensuremath{-}2ensuremath{pi}/3$. To reduce the surface electric fields, we employed a cross section with an ellipsoidal curvature around an iris aperture. The accelerating structure was manufactured for SACLA. High-power rf conditioning was conducted to investigate its performance. Owing to the conditioning, the acceleration gradient reached a value of more than $50.1ext{ }ext{ }mathrm{MV}/mathrm{m}$. The structure was operated without any serious issues at a repetition rate of 120 pps. The accelerating structures were installed in the dedicated accelerator for EUV-FEL at SACLA beam line-1. Finally, we obtained accelerated electron beams with the structures operated at an acceleration gradient of $41.4ext{ }ext{ }mathrm{MV}/mathrm{m}$.
机译:用于X射线自由电子激光器(XFEL)的高梯度加速线性加速器(LINAC)具有加速器长度短和制造成本低的优点。此外,LINAC的高脉冲重复率可以驱动多条X射线束线,为涉及XFEL的实验提供了更多的用户机会。开发了一种$ C $波段的磁盘加载型加速结构,以实现$> 50 text {} text {} mathrm {MV} / mathrm {m} $和rf-pulse的高加速梯度重复速率为120 pps,是XFEL设施SACLA(60 pps)的两倍。该结构具有准恒定梯度和行波类型,并具有$ mathrm {TM} 01 ensuremath {-} 2 ensuremath { pi} / 3 $的加速模式。为了减少表面电场,我们在虹膜光圈周围采用了椭圆形的横截面。加速结构是为SACLA制造的。进行大功率射频调节以研究其性能。由于该条件,加速度梯度达到了大于$ 50.1 text {} text {} mathrm {MV} / mathrm {m} $的值。该结构在没有任何严重问题的情况下以120 pps的重复速率运行。加速结构安装在SACLA光束线1处的EUV-FEL专用加速器中。最后,我们获得了结构加速为$ 41.4 text {} text {} mathrm {MV} / mathrm {m} $的结构的加速电子束。

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