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Low level Radio Frequency studies for the Compact Linear Collider Damping Rings

机译:紧凑型线性撞机阻尼环的低级射频研究

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摘要

The Compact Linear Collider (CLIC) Damping Rings (DRs) need to generate ultra-low emittance bunches to achieve high luminosity in CLIC. Strong wiggler magnets are required to significantly increase the energy loss per turn. A high total voltage Radio Frequency (RF) system is needed to compensate these losses. The resulting strong beam loading transients affect the bunch position and length. On the other hand, in order to maintain the luminosity loss below 1%, the bunch position has to be regulated within ±1° at 2 GHz (±400 urn) at the DR extraction. These conflicting specifications lead to a challenging design for the Low-Level RF (LLRF) system. In this work, simulations of the LLRF system are presented and validated using theoretical expressions. They are then used to evaluate various potential LLRF architectures, and to estimate and compare their performance to the demanding specifications on bunch longitudinal position in the CLIC DRs.
机译:紧凑的线性撞机(CLIC)阻尼环(DRS)需要产生超低辐射束,以在CLIC中实现高亮度。需要强大的Wiggler磁铁,以显着增加每个转弯的能量损失。需要高总电压射频(RF)系统来补偿这些损耗。由此产生的强光束加载瞬变影响束位置和长度。另一方面,为了保持低于1%的亮度损失,在DR提取时必须在2GHz(±400瓮)的±1°内调节束位置。这些冲突规范导致低级RF(LLRF)系统的具有挑战性的设计。在这项工作中,使用理论表达式呈现和验证了LLRF系统的模拟。然后,它们用于评估各种潜在的LLRF架构,并估计它们对CLIC DRS中束纵向位置的苛刻规范的性能。

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