论文标题
高轴耦合C波段Cu和Cuag加速结构的高梯度测试
High Gradient Testing of off-Axis Coupled C-band Cu and CuAg Accelerating Structures
论文作者
论文摘要
我们报告了两个单细胞离轴耦合的站立波加速结构的高梯度测试的结果。测试了两个带有相同几何形状的悬挂式站立波侧耦合结构,一种由纯铜铜制成,一种由银色铜合金制成的,银浓度为0.08%。在CUAG结构中,在CUAG结构中实现了450 mV的峰表面电场,其Klystron输入功率为14.5 MW,而1 Mirco的脉冲长度比CU结构中达到的峰表面电场高25%。由于空腔几何形状的两个主要优化,因此获得了高级梯度性能。1对峰表面电场的分流阻抗被最大化,以加速2个完全相对论的粒子2的梯度比为2的梯度比率2峰值磁场增强了,因此由于输入量的增强而导致的峰值磁场增强,从而最大程度地减少了脉冲脉冲脉冲加热。这些测试使我们得出结论,C带加速结构可以在类似于较高频率的峰场上运行,同时为更大的光束虹膜提供改进的光束传输。
We report the results of high gradient testing of two single cell off axis coupled standing wave accelerating structures. Two brazed standing wave side coupled structures with the same geometry were tested one made of pure copper Cu and one made of a copper silver CuAg alloy with silver concentration of 0.08 percent. A peak surface electric field of 450 MV per m was achieved in the CuAg structure for a klystron input power of 14.5 MW and a 1 mirco s pulse length which was 25 percent higher than the peak surface electric field achieved in the Cu structure. The superb high gradient performance was achieved because of the two major optimizations in the cavity geometry 1 the shunt impedance of the cavity was maximized for a peak surface electric field to accelerating gradient ratio of 2 for a fully relativistic particle 2 the peak magnetic field enhancement due to the input coupler was minimized to limit pulse heating. These tests allow us to conclude that C band accelerating structures can operate at peak fields similar to those at higher frequencies while providing a larger beam iris for improved beam transport.