Jet Substructure Probe on Scalar Leptoquark Models via Top Polarization
Abstract
The study of leptoquarks and their couplings to fermions with different chiralities provides a powerful tool for distinguishing among different leptoquark models. As a case study, we focus on two specific third-generation scalar leptoquark models, and , which differ in their electroweak quantum numbers and chiral structures of couplings to the top quark, leading to distinct top-quark polarization states. To enhance the efficacy of the analysis, we employ jet substructure techniques like Soft Drop, -subjettiness, and our custom -tagging method, along with other event variables. The analysis has been performed using both fixed radius and dynamic radius jet clustering algorithms. A multivariate analysis using a boosted decision tree (BDT) is performed to isolate signal from the Standard Model background. For a leptoquark mass of 1250 GeV, the analysis achieves a signal significance of up to at the 14 TeV HL-LHC. Furthermore, a -based profile likelihood estimator is applied to polarization-sensitive variables to discriminate between the two models. To enhance separation between the two models, an additional BDT classifier score is obtained by training a BDT network to distinguish between the and models. In the chosen signal region, the BDT classifier score provides a separation score of up to , outperforming traditional variables such as and .
Keywords
Cite
@article{arxiv.2505.16328,
title = {Jet Substructure Probe on Scalar Leptoquark Models via Top Polarization},
author = {Anupam Ghosh and Partha Konar and Tousik Samui and Ritesh K. Singh},
journal= {arXiv preprint arXiv:2505.16328},
year = {2025}
}
Comments
41 Pages, 6 Tables and 18 Captioned Figures