论文标题

部分可观测时空混沌系统的无模型预测

Particle Flow Calorimetry

论文作者

Ruchti, Randal, Kruger, Katja

论文摘要

PF量热法的动机是通过实验测量具有出色分辨率的强子喷射的能量。在粒子流设计中,对于从50 GEV到250 GEV的一系列射流能量应该可以使用Sigma(E)/E <5%,尤其对于在电子 - 峰值山脉(ILC,CLIC,FCCEE,CEPC)的实验中很重要。对于PF量热法至关重要的高粒度也可能非常有益于从事件的基础上从堆积的基础上堆叠的背景,这使得这种量热量计成为强子对撞机实验的有吸引力的方法,例如,在CERN HL-LHC上为CMS构造的HGCAL构造的HGCAL。

The motivation for PF calorimetry is to experimentally measure the energy of hadron jets with excellent resolution. In particle flow designs, sigma(E)/E < 5% should be possible for a range of jet energies from 50 GeV to 250 GeV, important particularly for experiments at electron-positron colliders (ILC, CLIC, FCCee, CEPC). The high granularity, which is essential for PF calorimetry, can also be very beneficial for removal of background from pile-up on an event-by-event basis making such calorimeters an attractive approach for hadron collider experiments, for example the HGCAL under construction for CMS at the CERN HL-LHC.

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