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A fast method for particle tracking and triggering using small-radius silicon detectors

机译:使用小半径硅探测器的粒子跟踪和触发的快速方法

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摘要

We propose an algorithm, deployable on a highly-parallelized graph computing architecture, to perform rapid reconstruction of charged-particle trajectories in the high energy collisions at the Large Hadron Collider and future colliders. We use software emulation to show that the algorithm can achieve an efficiency in excess of 99.95% for reconstruction with good accuracy. The algorithm can be implemented on silicon-based integrated circuits using field-programmable gate array technology. Our approach can enable a fast trigger for massive charged particles that decay invisibly in the tracking volume, as in some new-physics scenarios related to particulate dark matter. If production of dark matter or other new neutral particles is mediated by metastable charged particles and is not associated with other triggerable energy deposition in the detectors, our method would be useful for triggering on the charged mediators using the small-radius silicon detectors.
机译:我们提出了一种可部署在高度并行的图形计算体系结构上的算法,以在大型强子对撞机和未来对撞机的高能碰撞中执行带电粒子轨迹的快速重建。我们使用软件仿真来证明该算法可以以良好的精度实现超过99.95%的效率。该算法可以使用现场可编程门阵列技术在基于硅的集成电路上实现。我们的方法可以快速触发大量带电粒子,这些粒子在跟踪体积中会不可见地衰减,例如在某些与粒子暗物质有关的新物理场景中。如果暗物质或其他新的中性粒子的产生是由亚稳态带电粒子介导的,并且与检测器中其他可触发的能量沉积不相关,则我们的方法对于使用小半径硅检测器触发带电介体将是有用的。

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