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Research of Hybrid Photonic Crystal Accelerating Structures

机译:杂化光子晶体加速结构的研究

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In the design of high intensity rf accelerators,Photonic crystal has been suggested to suppress unwanted high order modes (HOMs) and avoid rf breakdown. Base on the conception,we select a metallic-dielectric (Copper + sapphire) PBG based cavities(named with pillbox structures) to establish an overmoded photonic crystal accelerating structure which consists of dielectric rods and metal disks with irises. The band gap calculation for 2D triangular crystal lattice of dielectric rods has been performed with plane wave expansion method (PWM). From the results,we simulated the accelerator structures with Microwave Studio,and optimized the dimensions for the operating higher-order TM02-like mode approaching communication frequency at 9.37GHz.The S-Parameters with the coupled probes was simulated at last.
机译:在高强度射频加速器的设计中,已建议使用光子晶体来抑制有害的高阶模(HOM)并避免射频击穿。根据这一概念,我们选择了一种基于金属电介质(铜+蓝宝石)的PBG型腔(以药盒结构命名),以建立一个过时的光子晶体加速结构,该结构由电介质棒和带有虹膜的金属盘组成。使用平面波扩展方法(PWM)对介电棒的2D三角形晶格进行了带隙计算。从结果中,我们用Microwave Studio模拟了加速器的结构,并优化了在接近通信频率9.37GHz的高阶TM02类工作模式下的尺寸。最后,模拟了带有耦合探头的S参数。

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