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Construction and commissioning of the compact energy-recovery linac at KEK

机译:KEK紧凑型能量回收直线加速器的建造和调试

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摘要

Energy-recovery linacs (ERLs) are promising for advanced synchrotron light sources, high-power free electron lasers (FELs), high-brightness gamma-ray sources, and electron-ion colliders. To demonstrate the critical technology of ERL-based light sources, we have designed and constructed a test accelerator, the compact ERL (cERL). Using advanced technology that includes a photocathode direct current (DC) electron gun and two types of 1.3-GHz-frequency superconducting cavities, the cERL was designed to be capable of recirculating low emittance (≤1 mm- mrad) and high average-current (>10 nvA) electron beams while recovering the beam energy. During initial commissioning, the cERL demonstrated successful recirculation of high-quality beams with normalized transverse emittance of ~0.14 mm- mrad and momentum spread of ~1.2 x 10~(-1) (rms) at a beam energy of 20 MeV and bunch charge below 100 fC. Energy recovery in the superconducting main linac was also demonstrated for high-average-current continuous-wave beams. These results constitute an important milestone toward realizing ERL-based light sources.
机译:能量回收直线加速器(ERL)有望用于先进的同步加速器光源,高功率自由电子激光(FEL),高亮度伽马射线源和电子离子对撞机。为了演示基于ERL的光源的关键技术,我们设计并构建了一种测试加速器,即紧凑型ERL(cERL)。使用包括光电阴极直流(DC)电子枪和两种类型的1.3 GHz频率超导腔的先进技术,cERL被设计为能够再循环低发射率(≤1mmmrad)和高平均电流(大于10 nvA)的电子束,同时恢复电子束能量。在初次调试期间,cERL演示了高质量光束的成功再循环,归一化横向发射率为〜0.14 mm-mrad,动量扩展为〜1.2 x 10〜(-1)(rms),光束能量为20 MeV,束状电荷低于100 fC。对于高平均电流连续波光束,还证明了超导主直线加速器的能量回收。这些结果构成了实现基于ERL的光源的重要里程碑。

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