首页> 外文期刊>Brazilian journal of physics >Plastic Scintillators and WLS Optical Fibers in Particle Physics - Characterization of Scintillators for the Future Circular Collider as a Function of Their Dimensions and Aging of WLS Optical Fibers
【24h】

Plastic Scintillators and WLS Optical Fibers in Particle Physics - Characterization of Scintillators for the Future Circular Collider as a Function of Their Dimensions and Aging of WLS Optical Fibers

机译:颗粒物理中的塑料闪烁体和WLS光纤 - 未来圆弧线闪烁器的表征作为其尺寸和WLS光纤老化的函数

获取原文
获取原文并翻译 | 示例
           

摘要

The calorimeters which will operate in experiments at the hadronic Future Circular Collider-FCC-hh-will be one of the key pieces for the complete exploration of collisions between hadrons. This is because the increasing of energy in proton collisions will require detectors that can work in environments under severe radiation, with high-energy rates, presenting a high resolution and low granularity. In this context, the choice of the hadronic calorimeter of the FCC-hh, the Hadronic Barrel (HB) and the extended barrel (HEB), will be inspired by the ATLAS Tile Calorimeter (TileCal). The HB will have 10 layers, with scintillating tiles that will be separated through a reflective material (e.g., Tyvek) and read by wavelength shifting fibers (WLS) of 1 mm in diameter connected to silicon photomultipliers (SiPMs). Our study focuses on the comparison of the luminous signal intensity in the tile in the first layer of the HB and the tile in the last layer of HB, taking into account the dimensions of the tile. A study on the optimization of the signal uniformity was made, by adding a light-absorbing black strip to the tile, and results were compared with similar experiments performed at CERN. The procedure was performed in the Tilemeter, in the Laboratory of Optics and Scintillating Materials (LOMaC) of the Laboratory of Instrumentation and Experimental Particle Physics, in Lisboa.
机译:将在TheRonic未来循环碰撞器-FCC-HH的实验中运行的量热计将是完全探索HADRONS之间的碰撞的关键件之一。这是因为质子碰撞中的能量的增加将需要可以在严重辐射下的环境中工作的探测器,具有高能量率,呈现高分辨率和低粒度。在这种情况下,FCC-HH,RoTronic桶(HB)和延长筒(HEB)的重整热量计的选择将由地图集瓦片量热计(TileCal)启发。 Hb将具有10层,其中闪烁的瓦片将通过反射材料(例如,Tyvek)分开,并且通过连接到硅光电倍增器(SIPMS)的直径的波长移位纤维(WLS)读取。我们的研究重点介绍,在HB的最后一层中的第一层和瓦片中的瓷砖中的瓷砖中的发光信号强度的比较,考虑到瓦片的尺寸。通过向瓦片添加光吸收黑条来进行对信号均匀性的优化的研究,并将结果与​​在CERN中进行的类似实验进行比较。该程序在蒂勒姆特,在Lisboa的仪器和实验室物理学实验室的光学和闪烁材料(LOMAC)的实验室中进行。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号