Simulation and Design of the Photonic Crystal Microwave Accelerating Structure
- Received Date: 2006-09-06
- Accepted Date: 2006-11-23
- Available Online: 2007-05-05
Abstract: 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. A coordinate-space, finite-difference code was used to calculate the complete dispersion curves for the lattices. The fundamental and higher frequency global photonic band gaps were determined numerically. The structure formed by triangular arrays of metal posts with a missing rod at the center has advantages of higher-order-modes (HOM) suppression and main mode restriction under the condition of a/b<0.2. The relationship between the RF properties and the geometrical parameters have been studied for the 9.37GHz photonic crystal accelerating structure. The RS, Q,RS/Q of the new structure may be comparable to the disk-loaded accelerating structure.