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Slow beam-extraction method using a fast Q-magnet assisted by RF-knockout

机译:使用快速Q磁铁和RF敲除的慢光束提取方法

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摘要

A new method for slow beam-extraction from a synchrotron ring is proposed, based on controlling a quadrupole field with a fast response (FQ), assisted by a transverse RF-field (RF-knockout). This method works as follows: (1) particles of a circulating beam are diffused by RF-knockout to just inside the boundary of a separatrix produced under a resonant condition, (2) exciting the FQ shrinks the separatrix to a certain size, and the particles outside the separatrix can be extracted, (3) the fast Q-field is turned off, and (4) the above process is repeated until all of the circulating beam is completely extracted. This method can extract prescribed particles at required timings quickly and precisely, because it is controlled with only the fast Q-field. A proof-of-principle experiment was carried out at the Heavy Ion Medical Accelerator in Chiba (HIMAC) synchrotron. As a result, it was verified that the beam was extracted only with exciting the FQ, but not with turning the RF-knockout on.
机译:提出了一种在具有快速响应(FQ)的四极子场控制下,借助横向RF场(RF敲除)的方法,从同步加速器环中缓慢提取光束的新方法。此方法的工作原理如下:(1)通过射频敲除将循环束的粒子扩散到共振条件下产生的分离线的边界内,(2)激发FQ将分离线缩小到一定大小,然后可以提取分离层外部的粒子,(3)关闭快速Q场,并且(4)重复上述过程,直到所有循环光束完全提取出来。该方法可以仅在快速的Q场上控制,因此可以在所需的时间快速准确地提取规定的粒子。在千叶重型离子医学加速器(HIMAC)同步加速器上进行了原理验证实验。结果,证实了仅在激发FQ时才提取光束,而没有在打开RF信号敲除时才提取光束。

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