ALICE ITS3: how to integrate a large dimension MAPS sensor in a bent configuration detector

Domenico Colella
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Abstract

The ALICE Collaboration is developing a novel vertexing detector to extend the heavy-flavour physics programme of the experiment during Run 4 by improving the pointing resolution of the tracking, particularly at low transverse momentum. It will be a detector with three truly cylindrical layers based on thin wafer scale MAPS, reaching less than 0.07% X/X0 per layer and with the innermost layer located as close as 19 mm to the interaction point. This contribution will describe the global detector integration concept, focusing on: the sensor bending procedure, the sensor electrical interconnection, the choice of the best carbon foam for light mechanical supporting structures, the studies of cooling by air flow, and the global structures mechanical characterization.
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ALICE ITS3:如何在弯曲配置探测器中集成大尺寸 MAPS 传感器
ALICE 协作小组正在开发一种新型顶点探测器,通过提高跟踪的指向分辨率,特别是在低横动量情况下的指向分辨率,在运行 4 期间扩展实验的重味物理学计划。它将是一个具有三个真正圆柱形层的探测器,基于薄晶圆尺度的 MAPS,每层的 X/X0 小于 0.07%,最内层距离相互作用点近至 19 毫米。本文将介绍全局探测器集成概念,重点包括:传感器弯曲程序、传感器电气互连、轻型机械支撑结构最佳碳泡沫的选择、气流冷却研究以及全局结构的机械特性。
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