论文标题
TPC检测器原型的性能与圆形对撞机的紫外线激光轨道集成
Performance of TPC detector prototype integrated with UV laser tracks for the circular collider
论文作者
论文摘要
近年来,已经提出了高能粒子物理学的几种新实验概念。物理目标包括精确测量Higgs,Z和W等粒子的性质,甚至在未来的围墙中寻找新物理学的迹象。为了满足粒子轨道检测器的不断发展的要求,为圆形电子探测器(CEPC)的主轨道检测器开发了与紫外线激光轨道系统集成的时间投影室(TPC)检测器原型。该原型由TPC检测器室周围的6个水平激光轨道组成,即1280个通道的快速电子读数,$ 200 \ times 200 \,MM^2 $ Active区域和DAQ系统的GEM检测器。通过使用TPC原型和紫外线激光轨道测量和分析,研究了HIT分辨率,DE/DX分辨率和漂移速度。原型的DE/DX分辨率测量为$(8.9 \ pm0.4)\,\%$。将其推送到具有220层和更长轨道的CEPC TPC中,该分辨率估计为$(3.36 \ pm0.26)\,\%$。所有结果表明,与紫外线激光轨道集成的TPC检测器原型可以很好地工作。
Several new experimental concepts in high-energy particle physics have been proposed in recent years. The physical goals include precisely measuring the properties of particles such as Higgs, Z and W, and even looking for signs of new physics at future colliders. To meet the evolving requirements for particle track detector, Time Projection Chamber(TPC) detector prototype integrated with a UV laser track system was developed for the main track detector at Circular Electron Positron Collider(CEPC). This prototype consists of 6 horizontal laser tracks around TPC detector chamber, a fast electronics readout of 1280 channels, a GEM detector with $200\times 200\,mm^2$ active area, and the DAQ system. The hit resolution, dE/dx resolution and drift velocity were studied by measuring and analyzing using the TPC prototype and UV laser tracks. The dE/dx resolution of the prototype was measured to be $(8.9\pm0.4)\,\%$. Extrapolating this to CEPC TPC with 220 layers and longer track, the resolution was estimated to be $(3.36\pm0.26)\,\%$. All results indicated that the TPC detector prototype integrated with UV laser tracks can work well.