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Conceptual study of a trigger module for the CMS Tracker at SLHC

机译:SLHC CMS跟踪器的触发模块的概念研究

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The CMS experiment is planning a major upgrade of its tracking system to adapt to an expected increase in luminosity of the LHC accelerator to 10~35 cm~-2 s~-1. It will then have to cope with several hundred interactions per bunch crossing and fluxes of thousands of charged particles emerging from collisions. CMS requires tracker data to contribute to the first level trigger, to maintain the present 100 kHz rate while increasing the trigger decision latency by only a few μs. It must be achieved without compromising the tracking performance which is very sensitive to the material budget. A key part of a system to achieve this will be the design of a suitable module to generate trigger primitives.One possible solution is based on the so-called "stacked tracker modules" using closely spaced, coarsely pixilated sensor layers situated at intermediate radius within the tracker volume. The pattern of hits in each layer is compared to identify high p-T track candidates. Simulations have been carried out which support the basic concept. A basic readout architecture is proposed and some of the electronic implications are described. Estimates of likely power consumption are given, as well as data rates and link bandwidth requirements.
机译:CMS实验正计划对其跟踪系统进行重大升级,以适应LHC加速器预期亮度增加到10〜35 cm〜-2 s〜-1的要求。这样一来,它就必须应对每束交叉的数百次相互作用以及碰撞产生的数千个带电粒子的通量。 CMS要求跟踪器数据有助于第一级触发,以维持当前的100 kHz速率,同时仅将触发决策延迟增加几微秒。必须在不影响对物料预算非常敏感的跟踪性能的情况下实现这一目标。实现此目标的系统的关键部分将是设计合适的模块以生成触发原语。一种可能的解决方案是基于所谓的“堆叠跟踪器模块”,该模块使用位于中间半径内的紧密间隔的粗像素化传感器层跟踪器音量。比较每一层中的命中模式以识别高p-T音轨候选者。已经进行了支持基本概念的模拟。提出了一种基本的读取架构,并描述了一些电子含义。给出了可能的功耗估计值,以及数据速率和链路带宽要求。

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