Novel Resistive-Plate WELL sampling element for (S)DHCAL

S. Bressler,P. Bhattacharya,A. Breskin,A. E. C. Coimbra, D. Shaked-Renous, A. Tesi, L. Moler,M. Chefdeville, G. Vouters, J. Karyotakis, C. Drancourt, M. Titov, T. Geralis

NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT(2019)

引用 5|浏览2
暂无评分
摘要
Digital and Semi-Digital Hadronic Calorimeters (S)DHCAL were suggested for future Colliders as part of the particle-flow concept. Though studied mostly with RPC-based techniques, investigations have shown that MPGD-based sampling elements could outperform. An attractive, industry-produced, robust, particle-tracking detector for large-area coverage, e.g. in (S)DHCAL, could be the novel single-stage Resistive Plate WELL (RPWELL). It is a single-sided THGEM coupled to the segmented readout electrode through a sheet of large bulk resistivity. We summarize here the preliminary test-beam results obtained with 6.5 mm thick (incl. electronics) {$48 \times 48\,\mathrm{cm^2}$}~RPWELL detectors. Two configurations are considered: a standalone RPWELL detector studied with 150 GeV muons and high-rate pions beams and RPWELL sampling element investigated within a small-(S)DHCAL prototype consisting of 7 resistive MICROMEGAS sampling elements followed by 5 RPWELL ones. The sampling elements were equipped with a Semi-Digital readout electronics based on the MICROROC chip.
更多
查看译文
关键词
Micropattern gaseous detectors (MPGD), THick Gaseous Electron Multiplier (THGEM), Resistive Plate WELL (RPWELL), Digital hadron calorimetry (DHCAL), Semi DHCAL (SDHCAL), Resistive electrodes, MICROROC, ILC, CLIC, CEPC
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要