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Production and performance of the silicon sensor and custom readout electronics for the PHENIX FVTX tracker

机译:PHENIX FVTX跟踪器的硅传感器和定制读数电子产品的生产和性能

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The Forward Silicon Vertex Tracker (FVTX) upgrade for the PHENIX detector at RHIC will extend the vertex capability of the central PHENIX Silicon Vertex Tracker (VTX). The FVTX is designed with adequate spatial resolution to separate decay muons coming from the relatively long-lived heavy quark mesons (Charm and Beauty), from prompt particles and the longer-lived pion and kaon decays that originate at the primary collision vertex. These heavy quarks can be used to probe the high-density medium that is formed in Au+Au collisions at RHIC. The FVTX is designed as two endcaps. Each endcap comprises four silicon disks covering opening angles from 10° to 35° to match the existing muon arm acceptance. Each disk consists of p-on-n, silicon wedges, with ac-coupled mini-strips on 75 μm radial pitch and projective length in the phi direction that increases with radius. A custom front-end chip, the FPHX, has been designed for the FVTX. The chip combines fast trigger capability with data push architecture in a low-power design.
机译:RHIC的PHENIX检测器的正向硅顶点跟踪器(FVTX)升级将扩展中央PHENIX硅顶点跟踪器(VTX)的顶点功能。 FVTX的设计具有足够的空间分辨率,可以将来自相对较长寿命的重夸克介子(“魅力与美丽”),迅速粒子以及来自主要碰撞顶点的较长寿命的pion和kaon衰减分离出来。这些重夸克可以用来探测在RHIC的Au + Au碰撞中形成的高密度介质。 FVTX被设计为两个端盖。每个端盖包括四个硅盘,覆盖从10°到35°的打开角度,以匹配现有的μ子臂接受度。每个磁盘由p对n硅楔组成,具有75μm径向节距的交流耦合小条,并且phi方向上的投影长度随半径增加。为FVTX设计了定制的前端芯片FPHX。该芯片在低功耗设计中结合了快速触发功能和数据推送架构。

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