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首页> 外文期刊>Physical Review. Accelerators and Beams >Emittance growth due to space charge compensation and beam intensity instabilities in negative ion beams
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Emittance growth due to space charge compensation and beam intensity instabilities in negative ion beams

机译:负离子束中由于空间电荷补偿和束强度不稳定性引起的发射率增长

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The need to extract the maximum beam intensity with low transversal emittance often comes with the drawback of operating the ion source to limits where beam current instabilities arise, such fluctuations can change the beam properties producing a mismatch in the following sections of the machine. The space charge compensation (SCC) generated by the beam particles colliding with the residual gas reaches a steady state after a build-up time. This paper shows how once in the steady state, the beam ends with a transversal emittance value bigger than the case without compensation. In addition, we study how the beam intensity variation can disturb the SCC dynamics and its impact on the beam properties. The results presented in this work come from 3-D simulations using tracking codes taking into account the secondary ions to estimate the degree of the emittance growth due to space charge and SCC.
机译:需要以低的横向发射来提取最大的束强度常常带来以下缺点:将离子源操作到限制出现束电流不稳定性的位置,这样的波动会改变束的性质,从而在机器的以下部分产生失配。由束状粒子与残留气体碰撞而产生的空间电荷补偿(SCC)在建立时间后达到稳定状态。本文显示了在稳态时,光束如何以大于没有补偿的情况下的横向发射值结束。此外,我们研究了光束强度变化如何干扰SCC动力学及其对光束特性的影响。这项工作提出的结果来自使用跟踪代码的3-D模拟,其中考虑了次级离子,以估算由于空间电荷和SCC引起的发射率增长的程度。

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