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3D simulation studies of the two-stream instability in intense particle beams based on the Vlasov-Maxwell equations

机译:基于Vlasov-Maxwell方程的强粒子束中两流不稳定性的3D模拟研究

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Two-stream instabilities in intense charged particle beams, described self-consistently by the nonlinear Vlasov-Maxwell equations, are studied using a 3D multispecies perturbative particle simulation method. The newly developed beam equilibrium, stability, and transport (BEST) code is used to simulate the linear and nonlinear properties of the electron-proton (e-p) two-stream instability observed in the Proton Storage Ring (PSR) experiment for a long coasting beam. Simulations in a parameter regime characteristic of the PSR experiment show that the e-p instability has a dipole-mode structure, and that the instability threshold descreases with increasing fractional neutralization, and increases with increasing axial momentum spread of the beam particles. In the nonlinear phase, the simulations show that the instability first saturates at a relatively low level, and subsequently grows to a higher level.
机译:使用3D多物种摄动粒子模拟方法研究了由非线性Vlasov-Maxwell方程自洽描述的强带电粒子束中的两流不稳定性。新开发的束平衡,稳定性和传输(BEST)代码用于模拟质子存储环(PSR)实验中观察到的长质滑行束流的电子质子(ep)两流不稳定性的线性和非线性性质。在PSR实验的参数态特征中进行的仿真表明,e-p不稳定性具有偶极子模式结构,并且不稳定性阈值随分数中和量的增加而减小,并且随束粒子的轴向动量散布的增加而增加。在非线性阶段,仿真表明,不稳定性首先在相对较低的水平上饱和,然后逐渐增长到较高的水平。

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