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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >From vertex detectors to inner trackers with CMOS pixel sensors
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From vertex detectors to inner trackers with CMOS pixel sensors

机译:从顶点检测器到带有CMOS像素传感器的内部跟踪器

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摘要

The use of CMOS Pixel Sensors (CPS) for high resolution and low material vertex detectors has been validated with the 2014 and 2015 physics runs of the STAR-PXL detector at RHIC/BNL. This opens the door to the use of CPS for inner tracking devices, with 10-100 times larger sensitive area, which require therefore a sensor design privileging power saving, response uniformity and robustness. The 350 nm CMOS technology used for the STAR-PXL sensors was considered as too poorly suited to upcoming applications like the upgraded ALICE Inner Tracking System (ITS), which requires sensors with one order of magnitude improvement on readout speed and improved radiation tolerance. This triggered the exploration of a deeper sub-micron CMOS technology, Tower-Jazz 180 nm, for the design of a CPS well adapted for the new ALICE-ITS running conditions. This paper reports the R & D results for the conception of a CPS well adapted for the ALICE-ITS.
机译:在RHIC / BNL的STAR-PXL检测器的2014年和2015年物理运行中,已验证将CMOS像素传感器(CPS)用于高分辨率和低材料顶点检测器。这为内部跟踪设备使用CPS开辟了大门,因为CPS的敏感区域要大10到100倍,因此需要一种传感器设计来降低功耗,响应均匀性和鲁棒性。 STAR-PXL传感器使用的350 nm CMOS技术被认为太不适合未来的应用,例如升级后的ALICE内部跟踪系统(ITS),该系统要求传感器的读取速度和辐射耐受性提高一个数量级。这触发了对更深的亚微米CMOS技术(Tower-Jazz 180 nm)的探索,以设计出非常适合新ALICE-ITS运行条件的CPS。本文报告了非常适合ALICE-ITS的CPS概念的研发成果。

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