首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Auto-triggerable HPD sensors fully readout on ethernet: applications for high-energy physics and medical imaging
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Auto-triggerable HPD sensors fully readout on ethernet: applications for high-energy physics and medical imaging

机译:可自动触发的HPD传感器可在以太网上完全读出:高能物理和医学成像的应用

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The OPERA project is dedicated to neutrino oscillation search in the CNGS neutrino beam from CERN to Gran Sasso (Experimental Proposal, CERN/SPSC 2000-028, SPSC/P318, LNGS P25/2000, July 10, 2000). The experiment is designed to characterize the interactions of ν_τ resulting of the ν_μ→ν_μ oscillation. The main element of the detector is a brick 10.2 cm x 12.8 cm cross-section consisting of 56 emulsion sheets 100 um wide, interleaved with 1 mm lead plates. These bricks are assembled in walls of ~ 7 m side. A total of 72 walls is foreseen for the OPERA experiment with a total fiducial mass of 2 ktons. When a neutrino interaction occurs, the tracks of the charged particles are recorded in the emulsions with a high accuracy and the topology of the event is fully reconstructed with an automatic scanning of the emulsions. The role of the target tracker in OPERA is to locate the brick where the primary neutrino interaction occurs, to provide triggers and to make a coarser reconstruction of the events. It consists of two planes of scintillator strips located after a brick wall. The scintillation photons are collected by WLS fibers and read by a multi-pixels photodetector. We present results obtained with 61 pixels HPD's readout by auto-triggerable front-end electronics of the VA-TA series. We have also developed a new kind of acquisition system based on Ethernet, able to read the front-end electronics and deliver the data directly to the Ethernet network. The full readout chain from the scintillator to the DAQ has been tested with cosmics and with beams from the CERN PS. The acquisition scheme is being proposed for the OPERA DAQ system and can be implemented for medical applications with various photodetectors. A prototype of micro-Positron Emission Tomograph (microPET) is being build on this scheme in collaboration with other Rhone-Alpes Institutes.
机译:OPERA项目致力于从CERN到Gran Sasso的CNGS中微子束中的中微子振荡搜索(实验方案,CERN / SPSC 2000-028,SPSC / P318,LNGS P25 / 2000,2000年7月10日)。设计该实验以表征由ν_μ→ν_μ振荡引起的ν_τ的相互作用。检测器的主要元件是一块横截面为10.2厘米x 12.8厘米的砖,由56张100 um宽的乳胶片和1毫米的铅板交错而成。这些砖块组装在〜7 m边的墙中。对于OPERA实验,预计总共将有72堵墙,总基准质量为2吨。当发生中微子相互作用时,带电粒子的轨迹会高精度地记录在乳剂中,并且通过自动扫描乳剂可以完全重建事件的拓扑。目标跟踪器在OPERA中的作用是定位发生初级中微子相互作用的砖块,提供触发条件,并对事件进行更粗略的重构。它由位于砖墙之后的两个闪烁体带平面组成。闪烁光子由WLS光纤收集,并由多像素光电探测器读取。我们介绍了通过VA-TA系列的可自动触发的前端电子设备以61像素HPD的读数获得的结果。我们还开发了一种基于以太网的新型采集系统,能够读取前端电子设备并将数据直接传送到以太网。从闪烁体到DAQ的完整读出链已通过宇宙学和CERN PS的光束进行了测试。该采集方案正在为OPERA DAQ系统提出,并可以用于具有各种光电探测器的医疗应用。微型正电子发射断层扫描仪(microPET)的原型正在与其他Rhone-Alpes研究所合作建立。

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