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Measurement of transmission efficiency for 400 MeV proton beam through collimator at Fermilab MuCool Test Area using Chromox-6 scintillation screen

机译:使用Chromox-6闪烁屏在费米实验室MuCool测试区通过准直仪测量400 MeV质子束的传输效率

摘要

The MuCool Test Area (MTA) at Fermilab is a facility to develop the technology required for ionization cooling for a future Muon Collider and/or Neutrino Factory. As part of this research program, feasibility studies of various types of RF cavities in a high magnetic field environment are in progress. As a unique approach, we have tested a RF cavity filled with a high pressure hydrogen gas with a 400 MeV proton beam in an external magnetic field (B = 3 T). Quantitative information about the number of protons passing through this cavity is an essential requirement of the beam test. The MTA is a flammable gas (hydrogen) hazard zone. Due to safety reasons, no active (energized) beam diagnostic instrument can be used. Moreover, when the magnetic field is on, current transformers (toroids) used for beam intensity measurements do not work due to the saturation of the ferrite material of the transformer. Based on these requirements, we have developed a passive beam diagnostic instrumentation using a combination of a Chromox-6 scintillation screen and CCD camera. This paper describes details of the beam profile and position obtained from the CCD image with B = 0 T and B = 3 T, and for high and low intensity proton beams. A comparison is made with beam size obtained from multi-wires detector. Beam transmission efficiency through a collimator with a 4 mm diameter hole is measured by the toroids and CCD image of the scintillation screen. Results show that the transmission efficiency estimated from the CCD image is consistent with the toroid measurement, which enables us to monitor the beam transmission efficiency even in a high magnetic field environment.
机译:Fermilab的MuCool测试区(MTA)是为未来的Muon Collider和/或Neutrino工厂开发电离冷却所需技术的设施。作为该研究计划的一部分,正在进行在高磁场环境中对各种类型的RF腔进行可行性研究。作为一种独特的方法,我们已经在外部磁场(B = 3 T)中测试了一个充满高压氢气和400 MeV质子束的RF腔。关于通过该腔的质子数量的定量信息是电子束测试的基本要求。 MTA是易燃气体(氢)危险区。出于安全原因,不能使用有源(通电)光束诊断仪。此外,当磁场打开时,由于变压器的铁氧体材料的饱和,用于束强度测量的电流互感器(环形线圈)不起作用。基于这些要求,我们开发了一种结合使用Chromox-6闪烁屏幕和CCD摄像机的无源光束诊断仪器。本文描述了从B = 0 T和B = 3 T的CCD图像获得的光束轮廓和位置的详细信息,以及高强度和低强度质子束。与从多线探测器获得的光束大小进行了比较。通过具有4 mm直径孔的准直仪的光束传输效率由闪烁屏的环形和CCD图像测量。结果表明,从CCD图像估计的传输效率与环形测量结果一致,这使我们即使在高磁场环境下也可以监视光束的传输效率。

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