摘要
以动力学理论为基础设计了一种工作频率为0.1THz的圆柱回旋自谐振脉塞(CARM)放大器,进行了详细的理论研究分析,同时采用粒子模拟软件进行计算机模拟及参数的优化设计,设计出增益达到26.1dB的放大器。还将粒子模拟结果与动力学理论数值计算结果进行比较和分析,结果发现粒子模拟和理论分析结果基本相吻合,且描述的规律一致,从而从两个方面证明了设计的可行性。
The design of the 0.1THz cylindrical CARM amplifier based on the kinetic theory is presented. The numerical calculation and the PIC simulation are carried out for the design optimization. The comparison between the results of the PIC simulation and the numerical computation based on the kinetic theory shows that the laws and resuits of the two methods are the same, which proves the feasibility of this design.
出处
《成都信息工程学院学报》
2008年第2期214-218,共5页
Journal of Chengdu University of Information Technology