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Studies of uniformity of 50 μm low-gain avalanche detectors at the Fermilab test beam

机译:Fermilab测试光束上50μm低增益雪崩探测器的均匀性研究

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In this paper we report measurements of the uniformity of time resolution, signal amplitude, and charged particle detection efficiency across the sensor surface of low-gain avalanche detectors (LGAD). Comparisons of the performance of sensors with different doping concentrations and different active thicknesses are presented, as well as their temperature dependence and radiation tolerance up to6×1014 n/cm2. Results were obtained at the Fermilab test beam facility using 120 GeV proton beams, and a high precision pixel tracking detector. LGAD sensors manufactured by the Centro Nacional de Microelectrónica (CNM) and Hamamatsu Photonics (HPK) were studied. The uniformity of the sensor response in pulse height before irradiation was found to have a 2% spread. The signal detection efficiency and timing resolution in the sensitive areas before irradiation were found to be 100% and 30–40 ps, respectively. A “no-response” area between pads was measured to be about 130 μm for CNM and 170μm for HPK sensors. After a neutron fluence of6×1014 n/cm2the CNM sensor exhibits a large gain variation of up to a factor of 2.5 when comparing metalized and non-metalized sensor areas. An irradiated CNM sensor achieved a time resolution of 30 ps for the metalized area and 40 ps for the non-metalized area, while a HPK sensor irradiated to the same fluence achieved a 30 ps time resolution.
机译:在本文中,我们报告了在低增益雪崩探测器(LGAD)的传感器表面上,时间分辨率,信号幅度和带电粒子探测效率的均匀性的测量结果。给出了不同掺杂浓度和不同有效厚度的传感器性能的比较,以及它们对温度的依赖性和最高6×1014 n / cm2的辐射耐受性。使用120 GeV质子束和高精度像素跟踪检测器,在Fermilab测试束设备上获得了结果。研究了由国家微电子中心(CNM)和Hamamatsu Photonics(HPK)制造的LGAD传感器。发现在辐照之前脉冲高度中传感器响应的均匀性具有2%的扩展。辐照前敏感区域的信号检测效率和时序分辨率分别为100%和30–40 ps。焊盘之间的“无响应”区域对于CNM约为130μm,对于HPK传感器约为170μm。经过6×1014 n / cm2的中子注量后,CNM传感器在比较金属化和非金属化传感器面积时显示出高达2.5的大增益变化。辐照的CNM传感器对金属化区域的时间分辨率为30 ps,非金属化区域的时间分辨率为40 ps,而以相同通量辐照的HPK传感器的时间分辨率为30 ps。

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