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A NOVEL DESIGN FOR ION BEAM FUNNELING BY THE USE OF A TWO-BEAM RFQ AND A MULTIGAP-DEFLECTOR

机译:通过使用双光束RFQ和多坯漏斗的离子束漏斗的新颖设计

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Heavy ion inertial fusion (HIIF) injector linacs start with a set of low frequency radio-frequency quadrupoles (RFQs), because of the small values of the current limits of linear accelerators in the low energy part. For a higher ion energy, the frequency is increased to reach a better accelerator efficiency. The accumulation of ion beam current in such a driver linac is done by multiple stages of funneling: in each stage the accelerator frequency is doubled and two beams with 180 degrees phase shift are combined to fill all the rf-buckets of the high frequency accelerator stage. In the ideal case, there is no change of the emittance and the beam current and brightness are doubled. For the first funneling stage a two-beam RFQ, where two beams are bunched and accelerated in a single r.f. cavity and a novel scheme for an rf funneling deflector operating at low voltages has been developed. With the use of convergent beams, a short funneling structure placed around the beam crossing position seems to be possible.
机译:重离子惯性融合(HIIF)喷射器LINACS从一组低频射频四轮泵开始(RFQ),因为低能量部分的线性加速器的电流限值的少量。对于更高的离子能量,频率增加以达到更好的加速器效率。这种驱动器LINAC中的离子束电流的累积通过多个漏斗级完成:在每个阶段中,加速器频率加倍,并且组合了两个具有180度相移的光束以填充高频加速器级的所有RF-桶。在理想情况下,没有变化的可发射,光束电流和亮度翻倍。对于第一个漏斗阶段,双光束RFQ,其中两个光束被束缚并在单个R.F中加速。已经开发出在低电压下操作的RF漏斗偏转器的腔和新颖的方案。利用收敛梁的使用,围绕光束交叉位置放置的短漏斗结构似乎是可能的。

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