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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Exploratory study of a novel low occupancy vertex detector architecture based on high precision timing for high luminosity particle colliders
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Exploratory study of a novel low occupancy vertex detector architecture based on high precision timing for high luminosity particle colliders

机译:基于高精度定时的高发光度粒子对撞机新型低占用度顶点检测器体系结构的探索性研究

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摘要

Vertex detectors provide space-time coordinates for the traversing charged particle decay products closest to the interaction point. Resolving these increasingly intense particle fluences at high luminosity particle colliders, such as SuperKEKB, is an ever growing challenge. This results in a non-negligible occupancy of the vertex detector using existing low material budget techniques. Consequently, new approaches are being studied that meet the vertexing requirements while lowering the occupancy. In this paper, we introduce a novel vertex detector architecture. Its design relies on an asynchronous digital pixel matrix in combination with a readout based on high precision time-of-flight measurement. Denoted the Timing Vertex Detector (TVD), it consists of a binary pixel array, a transmission line for signal collection, and a readout ASIC. The TVD aims to have a spatial resolution comparable to the existing Belle2 vertex detector. At the same time it offers a reduced occupancy by a factor of ten while decreasing the channel count by almost three orders of magnitude. Consequently, reducing the event size from about 1 MB/event to about 5.9 kB/event.
机译:顶点探测器为最接近相互作用点的带电粒子衰变产物提供时空坐标。在诸如SuperKEKB之类的高亮度粒子对撞机上解决这些日益强烈的粒子通量是一个日益严峻的挑战。使用现有的低材料预算技术,这导致顶点检测器的占有率不可忽略。因此,正在研究在降低占用率的同时满足顶点要求的新方法。在本文中,我们介绍了一种新颖的顶点检测器体系结构。其设计依赖于异步数字像素矩阵,并结合了基于高精度飞行时间测量的读数。它被称为定时顶点检测器(TVD),由二进制像素阵列,用于信号收集的传输线和读出ASIC组成。 TVD的目标是具有与现有Belle2顶点检测器可比的空间分辨率。同时,它可以将占用率降低十倍,同时将通道数减少近三个数量级。因此,将事件大小从大约1 MB /事件减少到大约5.9 kB /事件。

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