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A high-speed driver for silicon photonics Mach-Zehnder modulator for high data-rate transfer of particle collision images in high-energy physics and in medical physics

机译:硅光子Mach-Zehnder调制器的高速驱动器,用于高能物理学和医学物理学中粒子碰撞图像的高数据传输率

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All the High Energy Physics (HEP) experiments in modern accelerators can be seen as real-time imaging devices whose main target is the reconstruction of the trajectories of the particles generated directly in the beam interactions - e.g. interaction between proton-proton beams in the Large Hadron collider (LHC) at CERN - or in the decay of other particles. Silicon imaging sensors are segmented in pixel arrays (50 μm × 50 μm) and they are bonded to custom Front-End (FE) ASICs. The data rate generated amounts to hundreds of Gbps for each FE ASIC. Similar scenario characterized the array of detectors in nuclear medicine systems such as PET (Positron Emission Tomography) scanners. Within this scenario, the paper presents the LI-trigger processor, which acts as an image compression processor with a compression factor 40:1. The paper also presents the silicon photonic Mach Zehnder Modulator with the relevant high-speed driver to transfer the multi-Gbps data rate with a tolerance to radiation damage up to 1 Grad.
机译:现代加速器中的所有高能物理(HEP)实验都可以看作是实时成像设备,其主要目标是重构直接在束相互作用中生成的粒子的轨迹-例如CERN的大型强子对撞机(LHC)中质子-质子束之间的相互作用-或其他粒子的衰变。硅成像传感器分为像素阵列(50μm×50μm),并与定制的前端(FE)ASIC结合。每个FE ASIC产生的数据速率总计数百Gbps。类似的情况是核医学系统中的探测器阵列的特征,例如PET(正电子发射断层扫描)扫描仪。在这种情况下,本文介绍了LI触发处理器,它用作具有40:1压缩系数的图像压缩处理器。本文还介绍了具有相关高速驱动器的硅光子Mach Zehnder调制器,可传输多Gbps数据速率,并能承受高达1 Grad的辐射损伤。

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