System concepts for doublet tracking layers

System concepts for doublet tracking layers
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双峰跟踪层的系统概念

DOI:
10.1088/1748-0221/5/10/c10001
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发表时间:
2010
影响因子:
1.3
通讯作者:
T. Mueller
T. Mueller
中科院分区:
工程技术4区
文献类型:
--
作者:
M. Garcia;M. Gilchriese;C. Haber;B. Heinemann;T. Mueller

文献摘要

被引文献

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对于未来的超大型强子对撞机(SLHC),所有具有实时触发功能的硅跟踪器都在考虑之中。双合态结构由半径上间隔很近的轴向条带层组成,是在约 10-20 GeV/c 范围内触发横向动量的自然配置。此处通过仿真研究此类结构,以便了解可能的抑制功率和数据速率。高度集成的多模块“板条”结构一直在研究中,作为大型硅跟踪器的构造和设计的通用解决方案。作为双态触发层的实际实现,这里对板条进行了研究,并发现为此应用提供了某些简单的技术扩展和优势。
For a future Super Large Hadron Collider (SLHC) all silicon trackers with real time triggering capability are under consideration. A doublet structure, consisting of axial strip layers spaced close by in radius, is a natural configuration for transverse momentum triggering in the ~ 10-20 GeV/c range. Such structures are studied here in simulation in order to understand possible rejection power and data rates. Highly integrated multi-modular, ``stave'' structures have been under study as a general solution to the construction and design of a large silicon tracker. As a practical implementation of doublet trigger layers, staves are investigated here and found to offer certain simple technical extensions and advantages for this application.