论文标题
基于粒子中的模拟的血浆频率计算降低
Reduced Plasma Frequency Calculation Based on Particle-In-Cell Simulations
论文作者
论文摘要
我们提出了一个方案,以根据从粒子中的粒子(PIC)模拟获得的结果来计算圆柱形隧道内部的圆柱形电子束的降低等离子体频率。在PIC仿真中,我们使用两个平行的,无接口的,紧密的网格对电子束进行调节,这些网格通过单色正弦电压源将电连接在一起。在系统以稳态运行后,监测沿隧道长度的电子能量和横梁电流分布。我们构建了一个描述梁的动力学的系统矩阵,该系统通过拟合2x2矩阵来估计,该矩阵最能与控制基于物理系统的系统的第一阶微分方程一致。将结果与理论分支和Mihran模型进行了比较,该模型通常用于计算此类系统中的血浆频率降低因子。我们的方法与理论模型表现出极好的一致性,但是它也是一般的。我们的方法可以潜在地用于确定在不同形状的梁隧道中传播的电子梁的血浆频率降低,在该隧道中尚无理论模型,例如圆柱形或椭圆形的电子束在金属梁隧道内部在cylindrical beam tunnel tunnel tunnal tunnal tunnal tunnal tunnarical tunnarical,正方形,正方形,正方形,或椭圆形横横座上传播的情况。它也可以应用于由多个流组成的电子束。
We propose a scheme to calculate the reduced plasma frequency of a cylindrical-shaped electron beam flowing inside of a cylindrical tunnel, based on results obtained from Particle-in-cell (PIC) simulations. In PIC simulations, we modulate the electron beam using two parallel, non-intercepting, closely-spaced grids which are electrically connected together by a single-tone sinusoidal voltage source. The electron energy and the beam current distributions along the length of the tunnel are monitored after the system is operating at steady-state. We build a system matrix describing the beam's dynamics, estimated by fitting a 2x2 matrix that best agrees with the first order differential equations that govern the physics-based system. Results are compared with the theoretical Branch and Mihran model, which is typically used to compute the plasma frequency reduction factor in such systems. Our method shows excellent agreement with the theoretical model, however, it is also general. Our method can be potentially utilized to determine the reduced plasma frequencies of electron beams propagating in differently-shaped beam tunnels, where no theoretical model yet exists, such as the case of a cylindrical or elliptical electron beam propagating inside of a metallic beam tunnel of cylindrical, square, or elliptical cross-section. It can be applied also to electron beams composed of multiple streams.