BNL直线加速器的高强度极化和非极化光源和注入器发展

A. Zelenski, G. Atoian, T. Lehn, D. Raparia, J. Ritter
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引用次数: 4

摘要

AGS-RHIC预注入配合物包括高强度(磁控管型)氢离子源、光泵极化离子源(OPPIS);750 keV RFQ和200 MeV Linac。在本文中,我们将重点介绍最近使用三个源的直线加速器预注入器升级:两个磁控管源和OPPIS。我们还介绍了磁控管在更高占空比和可靠性方面的最新发展。两个磁控管源产生120-130 mA电流(最大150 mA, 600-1000 us脉冲持续时间,7 Hz重复率)。LEBT的改进导致光束强度(在750 keV的RFQ后)增加到80 mA(最大90 mA)。由于LEBT线的缩短和静电Einzel透镜被磁性四极透镜取代,极化光束的效率输运也将得到改善。两源布局操作(一个源在运行,另一个源在备用)的经验可能对停机成本高的设施(如高能对撞机LHC或多用户设施如SNS)有用。
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High-intensity polarized and un-polarized sources and injector developments at BNL Linac
The AGS-RHIC pre-injector complex includes a high-intensity (magnetron type) H− ion source, an Optically Pumped Polarized Ion Source (OPPIS); 750 keV RFQ and 200 MeV Linac. In this paper we will focus on the recent Linac pre-injector upgrade with three sources: two magnetron sources and OPPIS. We also present the recent magnetron development to higher duty factor and reliability. Both magnetron sources produce 120-130 mA current (maximum 150 mA, 600-1000 us pulse duration, 7 Hz repetition rate). The LEBT improvement resulted in beam intensity increase (after RFQ at 750 keV) to 80 mA (maximum 90 mA). The polarized beam efficiency transport will be also improved due to shorter LEBT line and electrostatic Einzel lenses replacement with the magnetic quadrupole lenses. The experience of the two sources layout operation (one source in operation the second source in standby) might be useful for facilities with the high downtime cost (like high-energy collider LHC or multi-user facilities like SNS).
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