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Linear and nonlinear development of the negative mass instability in a modified betatron accelerator

机译:改进的电子感应加速器中负质量不稳定性的线性和非线性发展

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In the modified betatron concept, an intense ring of electrons is confined within a torus by a combination of a vertical mirror field Bz and a strong toroidal magnetic field Bθ. Above a transition energy YT ≈ (4vr20/a2)1/3, where v is Budker's parameter and ro, a are the major and minor radii of the torus, respectively, the effective mass of the particles becomes negative. In this regime, the ring is unstable to a kinking and bunching instability, the negative mass instability. Numerical calculations of the linear growth rates and nonlinear development of this instability are presented. The scaling of growth rate with beam energy y, toroidal mode number ℓ, and the toroidal field Bθ is obtained. The effect of varying the beam emittance and energy spread is also studied. All the simulations were performed with the 3-D electromagnetic PIC code IVORY.
机译:在改进的Betatron概念中,通过垂直镜面B Z 和强环形磁场B θ在垂直镜面B θ中局限于圆环内的强烈的电子环。高于过渡能量Y T ≈(4vr 2 0 / a 2 1/3 ,其中V是Budker的参数和R O ,A是圆环的主要和次要半径,颗粒的有效质量变为负。在该制度中,环对扭结和束缚不稳定性不稳定,负质量不稳定性。提出了这种不稳定性的线性生长速率和非线性发展的数值计算。获得光束能量Y,环形模式ℓ和环形磁场B 的生长速率的缩放。还研究了改变光束辐射和能量扩散的效果。使用3-D电磁PIC代码象牙进行所有模拟。

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