首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A free-jet Hg target operating in a high magnetic field intersecting a high-power proton beam
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A free-jet Hg target operating in a high magnetic field intersecting a high-power proton beam

机译:一种在高磁场中与高功率质子束相交的自由喷射汞靶

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A proof-of-principal experiment to investigate the interaction of a proton beam, high magnetic field, and high-Z target is planned to take place at CERN in early 2007. This experiment is part of the Muon Collider Collaboration, with participants from Brookhaven National Laboratory, Princeton University, Massachusetts Institute Of Technology, European Organization for Nuclear Research-CERN, Rutherford Appleton Laboratory, and Oak Ridge National Laboratory. An unconstrained mercury jet target system that interacts with a high power (1 MW) proton beam in a high magnetic field (15 T) is being designed. The Hg jet diameter is 1-cm with a velocity up to 20 m/s. A laser optical diagnostic system will be incorporated into the target design to permit observation of the dispersal of the jet resulting from interaction with a 24 GeV proton beam with up to 20 x 10(12) ppp. The target system includes instruments for sensing mercury vapor, temperature, flow rate, and sump tank level, and the means to position the jet relative to the magnetic axis of a solenoid and the proton beam. The design considerations for the system include all issues dealing with safely handling approximately 231 of Hg, transporting the target system and the mercury to CERN, decommissioning the experiment, and returning the mildly activated equipment and Hg to the US. (c) 2006 Elsevier B.V. All rights reserved.
机译:计划在2007年初在CERN进行一项质子束实验,质子束,高磁场和高Z目标的相互作用的研究。该实验是Muon Collider Collaboration的一部分,来自Brookhaven的参与者普林斯顿大学,麻省理工学院,欧洲核研究组织(CERN)国家实验室,卢瑟福·阿普尔顿实验室和橡树岭国家实验室。正在设计一种不受约束的水银喷射目标系统,该系统在高磁场(15 T)中与高功率(1 MW)质子束相互作用。汞射流直径为1厘米,速度最高为20 m / s。激光光学诊断系统将被并入目标设计中,以观察由与高达20 x 10(12)ppp的24 GeV质子束相互作用产生的射流的扩散。目标系统包括用于检测汞蒸气,温度,流速和储油箱液位的仪器,以及将射流相对于螺线管和质子束的磁轴定位的装置。该系统的设计考虑因素包括所有与安全处理约231 Hg,将目标系统和汞运输到CERN,停止实验以及将轻度活化的设备和Hg运回美国有关的所有问题。 (c)2006 Elsevier B.V.保留所有权利。

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