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Trends and new developments in gaseous detectors

机译:气体探测器的趋势和新发展

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摘要

Almost one century ago the method of particle detection with gaseous detectors was invented. Since then they have been exploited successfully in many experiments using a wide variety of different applications. The development is still going on today. The underlying working principles are today well understood and with the help of modern simulation techniques, new configurations can be easily examined and optimized before a first experimental test.Traditional wire chamber ensembles demonstrate that they are still up to date and are well prepared to meet also the challenges of LHC. Applications will be discussed using TPCs in high multiplicity environments with standard MultiWire Proportional Chamber (MWPC) as readout as well as drift tubes in a muon spectrometer for a Large Hardron Collider (LHC) experiment. Triggered by the evolving printed circuit technology, a new generation of gaseous detectors with very high position resolution and rate capability has emerged. Two representatives (MICROMEGAS, GEM) have proved their reliability in various experiments and are promising candidates for future projects. Performance and results will be discussed for these detectors. Furthermore, achievements in RPC-based detectors will be discussed. The standard Trigger RPC is a reliable low-cost semi-industrial manufactured device with good time resolution. Thin gap RPCs (Multigap-, and High Rate Timing RPC) show very fast signal response at high efficiency and significantly increased rate capability and will be applied in TOF detectors. (C) 2004 Elsevier B.V. All rights reserved.
机译:大约一个世纪前,发明了使用气体检测器进行粒子检测的方法。从那时起,它们已在使用各种不同应用程序的许多实验中成功开发。今天的发展仍在继续。如今,基本的工作原理已广为人知,并且借助现代仿真技术,可以在进行首次实验测试之前轻松检查和优化新的配置。传统的金属丝腔体组合表明,它们仍然是最新的,并准备充分满足大型强子对撞机的挑战。将使用TPC在高多样性环境中使用标准MultiWire比例腔室(MWPC)作为读数,以及用于大型Hardron对撞机(LHC)实验的μon光谱仪中的漂移管来讨论应用。在不断发展的印刷电路技术的推动下,出现了具有很高位置分辨率和速率能力的新一代气体检测器。两位代表(MICROMEGAS,GEM)已在各种实验中证明了其可靠性,并有望成为未来项目的候选人。将讨论这些检测器的性能和结果。此外,将讨论基于RPC的检测器的成就。标准的Trigger RPC是可靠的低成本半工业制造设备,具有良好的时间分辨率。细间隙RPC(多间隙和高速率定时RPC)在非常高的效率下显示出非常快的信号响应,并显着提高了速率能力,并将应用于TOF检测器中。 (C)2004 Elsevier B.V.保留所有权利。

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