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A novel technique for the reconstruction and simulation of hits in the CMS pixel detector

机译:一种新型CMS像素检测器中重建和模拟的技术

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New techniques for the reconstruction of hits in the pixel detectors of the Compact Muon Solenoid (CMS) experiment are described. The techniques are based upon the use of pre-computed projected cluster shapes or templates. A detailed simulation called Pixelav that has successfully described the profiles of clusters measured in beam tests of radiation-damaged sensors is used to generate the templates. Although the reconstruction technique was originally developed to optimally estimate the coordinates of hits after the detector became radiation damaged, it also has superior performance before irradiation. The technique requires a priori knowledge of the track angle which makes it suitable for the second in a two-pass reconstruction algorithm. However, the same modest angle sensitivity allows the algorithm to determine if the sizes and shapes of the cluster projections are consistent with the input angles. This information is proved to be useful in suppressing spurious hits caused by secondary particles and in validating seeds used in track finding. In addition, the template technique improves the resolution on the track impact parameter and light quark background rejection in b-tagged jets. Finally, a new procedure that uses the templates to reweigh clusters generated by the CMS offline simulation is described.
机译:描述了描述了紧凑的MuON螺线管(CMS)实验的像素检测器中重建的新技术。该技术基于使用预先计算的预计集群形状或模板。使用已成功描述在辐射损坏传感器的光束测试中测量的簇的配置文件的详细模拟用于生成模板。虽然重建技术最初开发为最佳地估计探测器辐射损坏后的命中的坐标,但它在照射前也具有卓越的性能。该技术需要先验的轨道角度知识,其使其适用于双通重构算法中的第二个。然而,相同的适度角度灵敏度允许算法确定集群投影的尺寸和形状是否与输入角度一致。事实证明,该信息可用于抑制由次级粒子引起的寄生命中和验证用于轨道发现的种子。此外,模板技术提高了B标签喷射中的轨道冲击参数和光夸克背景抑制的分辨率。最后,描述了一种使用模板来重量由CMS离线模拟生成的群集的新过程。

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