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Detailed studies of full-size ATLAS 12 sensors

机译:全尺寸ATLAS 12传感器的详细研究

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The "ATLAS ITk Strip Sensor Collaboration" R&D group has developed a second iteration of single-sided n~+-in-p type micro-strip sensors for use in the tracker upgrade of the ATLAS experiment at the High-Luminosity (HL) LHC. The full size sensors measure approximately 97 × 97 mm~2 and are designed for tolerance against the 1.1 × 10~(15) n_(eq)/cm~2 fluence expected at the HL-LHC. Each sensor has 4 columns of 1280 individual 23.9 mm long channels, arranged at 74.5 μm pitch. Four batches comprising 120 sensors produced by Hamamatsu Photonics were evaluated for their mechanical, and electrical bulk and strip characteristics. Optical microscopy measurements were performed to obtain the sensor surface profile. Leakage current and bulk capacitance properties were measured for each individual sensor. For sample strips across the sensor batches, the inter-strip capacitance and resistance as well as properties of the punch-through protection structure were measured. A multi-channel probecard was used to measure leakage current, coupling capacitance and bias resistance for each individual channel of 100 sensors in three batches. The compiled results for 120 unirradiated sensors are presented in this paper, including summary results for almost 500,000 strips probed. Results on the reverse bias voltage dependence of various parameters and frequency dependence of tested capacitances are included for validation of the experimental methods used. Comparing results with specified values, almost all sensors fall well within specification.
机译:“ ATLAS ITk条形传感器协作”研发小组开发了单面n〜+ -in-p型微带传感器的第二次迭代,可用于高光度(HL)LHC的ATLAS实验的跟踪器升级。全尺寸传感器的尺寸约为97×97 mm〜2,设计用于承受HL-LHC预期的1.1×10〜(15)n_(eq)/ cm〜2通量的公差。每个传感器具有4列1280个23.9 mm长的通道,间距为74.5μm。评估了由Hamamatsu Photonics生产的包括120个传感器的四批传感器的机械,电气体积和带状特征。进行光学显微镜测量以获得传感器表面轮廓。对每个传感器测量漏电流和体电容特性。对于跨传感器批次的样品条,测量了条间电容和电阻以及穿通保护结构的性能。多通道探针卡用于测量三批100个传感器的每个通道的泄漏电流,耦合电容和偏置电阻。本文介绍了120个未辐照传感器的汇总结果,包括对近500,000条检测条的汇总结果。包括各种参数的反向偏置电压依赖性和测试电容的频率依赖性的结果,以验证所使用的实验方法。将结果与指定值进行比较,几乎所有传感器都在规格范围内。

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