论文标题
SuperFGD原型带电颗粒梁测试
The SuperFGD Prototype Charged Particle Beam Tests
论文作者
论文摘要
一种新型的闪烁体检测器SuperFGD已被选为升级T2K实验ND280靠近检测器的主要中微子目标。检测器设计将使在近检测器处的中微子相互作用近4π覆盖范围,并将提供较低的能量阈值,从而大大减少实验的系统误差。 SuperFGD由尺寸为10x10x10 mm^3的光学分离的闪光灯立方体制成,提供了所需的空间和能量分辨率,以减少未来T2K运行的系统不确定性。 T2K的SuperFGD将在1920x560x1840 mm^3体积中有近200万立方体。在CERN PS设施的带电粒子梁线上测试了由24x8x48立方体制成的原型。 SuperFGD原型的启动电子设备具有类似于T2K的未来实现的读取电子产品。本文报告了有关电子和检测器响应的结果,以及对这种类型检测器的3D重建能力的讨论。还讨论了使用原型数据进行的几种物理学分析,包括对质子停止的研究。
A novel scintillator detector, the SuperFGD, has been selected as the main neutrino target for an upgrade of the T2K experiment ND280 near detector. The detector design will allow nearly 4π coverage for neutrino interactions at the near detector and will provide lower energy thresholds, significantly reducing systematic errors for the experiment. The SuperFGD is made of optically-isolated scintillator cubes of size 10x10x10 mm^3, providing the required spatial and energy resolution to reduce systematic uncertainties for future T2K runs. The SuperFGD for T2K will have close to two million cubes in a 1920x560x1840 mm^3 volume. A prototype made of 24x8x48 cubes was tested at a charged particle beamline at the CERN PS facility. The SuperFGD Prototype was instrumented with readout electronics similar to the future implementation for T2K. Results on electronics and detector response are reported in this paper, along with a discussion of the 3D reconstruction capabilities of this type of detector. Several physics analyses with the prototype data are also discussed, including a study of stopping protons.