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Pulse Forming Network Conceptual Design for the Proposed PS Multi-Turn Extraction System

机译:脉冲形成所提出的PS多转萃取系统的网络概念设计

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A five-turn continuous extraction system is currently used to transfer the proton beam from the CERN Proton Synchrotron (PS) to the Super Proton Synchrotron (SPS). The present approach, which is based on cutting the filament beam into 5 slices using an electrostatic septum, causes inherent losses of about 15% of the extracted beam and non optimal betatronic matching for the different slices in the receiving machine. This will be an even more serious drawback when the beam intensity needs to be increased for the CERN Neutrinos to Gran Sasso (CNGS) facility. To overcome this, a novel Multi-Turn Extraction (MTE) scheme has been proposed, where the beam is separated, prior to extraction, into a central beam core and four islands by means of elements such as sextupoles and octupoles. Each beamlet is ejected using fast kickers and a magnetic septum. For the MTE kickers, two new pulse generators are required, each containing a lumped element Pulse Forming Network (PFN) of 12.5 Ω, 80 kV and 10.5 us. For cost reasons, it is envisaged to re-use existing 15 Ω transmission line kicker magnets. The PFN characteristic impedance deliberately mismatches that of the magnets to allow a higher maximum available kick. The PFN design has been optimized such that undesirable side-effects of the impedance mismatch, on kick rise-time and flat-top, remain within acceptable limits. The conceptual design for the MTE PFN is presented.
机译:一个五匝连续萃取系统目前用于将质子束从CERN质子同步加速器(PS)到超级质子同步加速器(SPS)传输。本方法中,这是基于用静电隔膜切割长丝光束分成5片,使所提取的束和非最佳betatronic匹配用于在接收机中的不同层的约15%的固有损耗。当束强度需要为欧洲核子研究中心的中微子到格兰萨索(CNGS)设施,以增加这将是一个更严重的缺点。为了克服这个问题,一种新颖的多匝萃取(MTE)方案已被提出,其中光束被分离,提取之前,到中央梁芯和四个岛由元素如sextupoles和八极的手段。每个子束被使用快速踢球和磁性隔膜排出。对于MTE抛掷器,两个新的脉冲发生器是必需的,每片含12.5Ω,80千伏和10.5我们的集总元件脉冲形成网络(PFN)。出于成本的原因,可以设想现有的15个Ω传输线冲击磁铁重新使用。在PFN特性阻抗不匹配故意使磁铁的,以允许更高的最大可用的球。在PFN设计已被优化,使得阻抗不匹配的不期望的副作用,在踢上升时间和平顶,保持在可接受的限度内。提出了MTE PFN的概念设计。

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