欧洲核子研究中心LHC束流倾倒系统光学再触发系统的展望

J. Rodziewicz, E. Carlier, T. Fowler, B. Goddard, N. Magnin, O. Rabot
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引用次数: 2

摘要

LHC(大型强子对撞机)光束提取踢子系统,由每束15个快速踢子磁铁组成,用于从对撞机中一圈提取粒子,并在稀释后将其处理在外部吸收器上。15个磁体中的每一个都由一个单独的脉冲发生器供电,当需要从机器中提取光束时,所有这些磁体都会同时触发。单个发生器的自燃将产生可能超过加速器孔径的光束振荡,导致光束损失和对机器的潜在损坏。为了防止此类事件的发生,已经实现了一个重新触发系统(RTS),以尽可能快地重新分配从自燃发电机发出的触发请求到所有15个发电机。研究了一种基于被动产生和传输光功率到所有其他发电机的即时传输系统的前景,作为现有重触发线路解决方案的替代方案。这可以通过将来自一个发生器的重新触发源的许多二极管激光阵列的光耦合到随后分配给所有15个发生器的光纤束来实现。在每个发电机控制阶段,我们预见到一个重新触发开关,以确保将光信号转换为隔离的电触发脉冲。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prospects for an optical re-triggering system for the LHC beam dumping system at CERN
The LHC (Large Hadron Collider) beam extraction kicker system, composed of 15 fast kicker magnets per beam, is used to extract the particles in one turn from the collider and to dispose of them, after dilution, on an external absorber. Each of the 15 magnets is powered by a separate pulse generator, all of which are simultaneously triggered when a beam extraction from the machine is requested. Spontaneous firing of a single generator will create beam oscillations that are likely to exceed the accelerator aperture, resulting in beam losses and potential damage to the machine. In order to protect against occurrence of such events, a Re-Triggering System (RTS) has been implemented to redistribute, as fast as possible, a trigger request issued from the spontaneous-firing generator to all 15 generators. A prospect for a RTS based on passively generated and transmitted optical power to all others generators has been studied as an alternative to existing re-triggering line solution. This can be accomplished by coupling light from a number of diode laser arrays at re-trigger sources of one generator to bundles of optical fibres subsequently dispatched to all 15 generators. At each generator control stage we foresee a re-triggering switch which ensures the conversion of the light signal into an isolated electrical triggering pulse.
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