论文标题

使用基于TimePix3的相机的Ariadne LARTPC的光学读数

Optical Readout of the ARIADNE LArTPC using a Timepix3-based Camera

论文作者

Lowe, Adam, Majumdar, Krishanu, Mavrokoridis, Konstantinos, Philippou, Barney, Roberts, Adam, Touramanis, Christos, Vann, Jared

论文摘要

Ariadne实验利用1吨双相液体氩时间投影室(LARTPC)旨在为大型LAR检测器开发和成熟的光学读数技术。本文使用宇宙元音描述了安装在Ariadne检测器上的TimePix3相机的表征。来自相机的原始数据本地抑制了3D,零数据允许直接的事件重建,并提出了重建的LAR交互事件的画廊。利用读数的1.6 ns时间分辨率,在0.54 kV/cm处确定LAR中电离电子的漂移速度为1.608 \ pm 0.005 mm/μs。使用贯穿次数的能量校准和分辨率确定。发现所介绍的数据集的能量分辨率约为11%。还针对两个停止次数事件进行了对能量沉积(DE/DX)作为距离的函数的初步研究,与Geant4模拟的比较表明良好一致。提出的结果证明了这项技术的功能,并在未来的kiloton级双相LAR检测器的背景下讨论了其应用,该检测器将在Dune计划中使用。

The ARIADNE Experiment, utilising a 1-ton dual-phase Liquid Argon Time Projection Chamber (LArTPC), aims to develop and mature optical readout technology for large scale LAr detectors. This paper describes the characterisation, using cosmic muons, of a Timepix3-based camera mounted on the ARIADNE detector. The raw data from the camera are natively 3D and zero suppressed, allowing for straightforward event reconstruction, and a gallery of reconstructed LAr interaction events is presented. Taking advantage of the 1.6 ns time resolution of the readout, the drift velocity of the ionised electrons in LAr was determined to be 1.608 \pm 0.005 mm/μs at 0.54 kV/cm. Energy calibration and resolution were determined using through-going muons. The energy resolution was found to be approximately 11 % for the presented dataset. A preliminary study of the energy deposition (dE/dx) as a function of distance has also been performed for two stopping muon events, and comparison to GEANT4 simulation shows good agreement. The results presented demonstrate the capabilities of this technology, and its application is discussed in the context of the future kiloton-scale dual-phase LAr detectors that will be used in the DUNE programme.

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