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首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Flux Loop Measurements of the Magnetic Flux Density in the CMS Magnet Yoke
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Flux Loop Measurements of the Magnetic Flux Density in the CMS Magnet Yoke

机译:CMS磁通磁通中磁通密度的磁通回路测量

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The Compact Muon Solenoid (CMS) is a general purpose detector designed to run at the highest luminosity at the CERN Large Hadron Collider (LHC). Its distinctive features include a 4-T superconducting solenoid with 6-m-diameter by a 12.5-m-length free bore, enclosed inside a 10,000-ton return yoke made of construction steel. The return yoke consists of five dodecagonal three-layered barrel wheels and four end-cap disks at each end comprised of steel blocks up to 620 mm thick, which serve as the absorber plates of the muon detection system. To measure the field in and around the steel, a system of 22 flux loops and 82 3-D Hall sensors is installed on the return yoke blocks. A 3-D model of the CMS magnet is developed to describe the magnetic field everywhere outside the tracking volume measured with the field-mapping machine. The first attempt is made to measure the magnetic flux density in the steel blocks of the CMS magnet yoke using the standard magnet discharge with the current ramp down speed of 1.5 A/s.
机译:紧凑型μ子螺线管(CMS)是一般的探测器,旨在以CERN大强子撞机(LHC)的最高亮度运行。其独特的特征包括4-T超导电磁阀,其直径为6-m-,通过12.5米的自由孔,封闭在由建筑钢制成的10,000吨返回轭内。返回轭由五个十二角形三层桶轮组成,每个端部的四个端盖盘组成,每个端部包括高达620毫米厚的钢块,用作μ子检测系统的吸收板。为了测量钢中和周围的磁场,在返回轭块上安装了22个磁通环和82个3-D霍尔传感器的系统。开发CMS磁体的3D模型以描述用现场映射机器测量的跟踪体积之外的磁场。首先尝试使用标准磁体放电,测量CMS磁通轭的钢块中的磁通密度,其电流斜坡下降速度为1.5A / s。

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