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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Analysis and numerical design of Resistive AC-Coupled Silicon Detectors (RSD) for 4D particle tracking
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Analysis and numerical design of Resistive AC-Coupled Silicon Detectors (RSD) for 4D particle tracking

机译:用于4D粒子跟踪的电阻性交流耦合硅探测器(RSD)的分析和数值设计

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In this paper we present the numerical simulation of silicon detectors with internal gain as the main tool for 4-dimensional (4D) particle trackers design and optimization. The Low-Gain Avalanche Diode (LGAD) technology and its present limitations are reviewed with the aim of introducing the Resistive AC-Coupled Silicon Detectors (RSD) paradigm as a case study of our investigation. Authors here present Spice-like and 2D/3D Technological Computer-Aided Design (TCAD) simulations to characterize sensors in terms of both their electrostatic behavior, capacitive (dynamic) coupling and radiation-hardness performances, showing the methodological approach used in order to extract the set of layout rules allowing the release of RSD1, the incoming production run at Fondazione Bruno Kessler (FBK) of next-generation silicon detectors for 4D tracking with intrinsic 100% fill-factor.
机译:在本文中,我们介绍了内部增益为4维(4D)粒子跟踪器设计和优化的主要工具的硅探测器的数值模拟。综述了低增益雪崩二极管(LGAD)技术及其当前的局限性,目的是引入电阻性交流耦合硅探测器(RSD)范例作为我们研究的案例研究。本文的作者介绍了Spice-like和2D / 3D技术计算机辅助设计(TCAD)仿真,以通过传感器的静电行为,电容(动态)耦合和辐射硬度性能来表征传感器,并展示了用于提取的方法学方法。这套允许发布RSD1的布局规则集,即将在Fondazione Bruno Kessler(FBK)进行下一代硅检测器的生产,以100%固有填充率进行4D跟踪。

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