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Real time tracker based upon local hit correlation circuit for silicon strip sensors

机译:基于局部命中相关电路的硅条传感器实时跟踪器

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摘要

For the planned high luminosity upgrade of the Large Hadron Collider (LHC), a significant performance improvement of the detectors is required, including new tracker and trigger systems that makes use of charged track information early on. In this note we explore the principle of real time track reconstruction integrated in the readout electronics. A prototype was built using the silicon strip sensor for the ATLAS phase-Ⅱ upgrade. The real time tracker is not the baseline for ATLAS but is nevertheless of interest, as the upgraded trigger design has not yet been finalized. For this, a new readout scheme in parallel with conventional readout, called the Fast Cluster Finder (FCF), was included in the latest prototype of the ATLAS strip detector readout chip (ABC130). The FCF is capable of finding hits within 6 ns and transmitting the found hit information synchronously every 25 ns. Using the FCF together with external correlation logic makes it possible to look for pairs of hits consistent with tracks from the interaction point above a transverse momentum threshold. A correlator logic finds correlations between two closely spaced parallel sensors, a "doublet", and can generate information used as input to a lowest level trigger decision. Such a correlator logic was developed as part of a demonstrator and was successfully tested in an electron beam. The results of this test beam experiment proved the concept of the real time track vector processor with FCF.
机译:对于计划的大型强子对撞机(LHC)的高发光度升级,需要对探测器进行重大性能改进,包括新的跟踪器和触发系统,这些系统会尽早使用带电的跟踪信息。在本文中,我们探讨了集成在读出电子设备中的实时轨道重建原理。使用硅条传感器为ATLASⅡ期升级构建了原型。实时跟踪器不是ATLAS的基准,但仍然值得关注,因为升级后的触发器设计尚未完成。为此,在ATLAS条形检测器读出芯片(ABC130)的最新原型中包括了与常规读出并行的新读出方案,称为快速簇查找器(FCF)。 FCF能够在6 ns内找到命中值,并每25 ns同步发送找到的命中信息。将FCF与外部相关逻辑一起使用,可以从高于横向动量阈值的交互点寻找与轨迹一致的命中对。相关器逻辑找到两个紧密间隔的并行传感器(“双峰”)之间的相关性,并可以生成用作最低级别触发决策的输入的信息。这种相关器逻辑是作为演示器的一部分开发的,并已在电子束中成功测试。该测试光束实验的结果证明了带有FCF的实时轨道矢量处理器的概念。

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