Maximum performance of strange-jet tagging at hadron colliders
High Energy Physics - Experiment
2021-09-01 v2 Instrumentation and Detectors
Abstract
The maximum achievable performance of strange-jet tagging at hadron colliders and the loss in performance in different detector designs is estimated based on simulated truth jets from strange-quark and down-quark hadronisation. Both jet types are classified with a recurrent neural network using long short-term memory units, at first using all available truth particles and then applying selections to study the impacts of ideal tracking detectors, Cherenkov detectors, and calorimeters. Additionally, a manual reconstruction of strange hadron decays such as from charged tracks is considered.
Cite
@article{arxiv.2011.10736,
title = {Maximum performance of strange-jet tagging at hadron colliders},
author = {Johannes Erdmann and Olaf Nackenhorst and Sonja Verena Zeißner},
journal= {arXiv preprint arXiv:2011.10736},
year = {2021}
}
Comments
v2 includes the correction of a bug impacting the performance of the tracking detector scenario