1) Comer Coupled Structure
角耦合驻波加速结构
1.
A new type of resonantly coupled accelerating structure, named Comer Coupled Structure (CCS) is presented.
角耦合驻波加速结构(Corner Coupled Structure,CCS)是一种双周期共振耦合驻波加速结构,其耦合腔安置于相邻两个加速腔及加速腔外壁之间的角落区域(Corner Area),通过耦合孔与加速腔相连,故称角耦合驻波加速结构,用它组合成的角耦合驻波加速管兼有边耦合驻波加速管、轴耦合驻波加速管及环耦合驻波加速管的优点,可用于医用、工业探伤、无损检测、工业辐照、物理试验等技术领域。
2) standing wave accelerator
驻波加速器
3) coupled-cavity slow wave structure
耦合腔慢波结构
1.
Dispersion analysis of a coupled-cavity slow wave structure filled with plasma;
等离子体加载耦合腔慢波结构色散分析
4) side-coupled standing-wave cavity
边耦合驻波腔
5) microwave accelerating structure
微波加速结构
1.
2 and the photonic crystal microwave accelerating structure with a missing rod at the center has advantages of higher-order-modes(HOM) suppression and main mode restriction.
采用Microwave Studio计算了该种光子晶体微波加速结构的场型分布,结果显示当a/b<0。
2.
We have derived the global band gaps for general two-dimensional (2D) photonic crystal microwave accelerating structures formed by square or triangular arrays of metal posts.
2时,由该种光子晶体构成的微波加速结构可约束主模、抑制高次模;用Microwave Studio软件模拟计算了三角形晶格分布的二维光子晶体加速结构,研究了新加速结构的RF参数与结构尺寸的关系,优化出一组RF频率为9。
6) X-band accelerating structure
X波段加速结构
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