Dziurda Agnieszka, Giza Maciej, Gligorov Vladimir V, Hulsbergen Wouter, Kutsenko Bogdan, Mariani Saverio, Nolte Niklas, Reiss Florian, Spradlin Patrick, Vom Bruch Dorothea, Wojton Tomasz
Henryk Niewodniczanski Institute of Nuclear Physics Polish Academy of Sciences, Kraków, Poland.
LPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3, Paris, France.
Eur Phys J C Part Fields. 2025;85(6):609. doi: 10.1140/epjc/s10052-025-14225-7. Epub 2025 Jun 2.
The physics programme of the LHCb experiment at the Large Hadron Collider requires an efficient and precise reconstruction of the particle collision vertices. The LHCb Upgrade detector relies on a fully software-based trigger with an online reconstruction rate of 30 , necessitating fast vertex finding algorithms. This paper describes a new approach to vertex reconstruction developed for this purpose. The algorithm is based on cluster finding within a histogram of the particle trajectory projections along the beamline and on an adaptive vertex fit. Its implementations and optimisations on x86 and GPU architectures and its performance on simulated samples are also discussed.
大型强子对撞机上LHCb实验的物理程序需要对粒子碰撞顶点进行高效且精确的重建。LHCb升级探测器依赖于完全基于软件的触发器,其在线重建速率为30 ,这就需要快速的顶点查找算法。本文描述了为此目的开发的一种新的顶点重建方法。该算法基于沿束线的粒子轨迹投影直方图内的簇查找以及自适应顶点拟合。还讨论了其在x86和GPU架构上的实现与优化以及在模拟样本上的性能。