Prospect of measuring the top quark mass through energy correlators
arXiv:2405.20001 · doi:10.1007/JHEP10(2024)088
Abstract
Reaching a high precision of the top quark mass is an important task of the Large Hadron Collider. We perform a feasibility study of measuring the top quark mass through the three-point energy correlator. The expected sensitivity of the top quark mass in the boosted regime is presented. We further introduce its application to the low top regime and demonstrate that both the W boson and the top quark masses could be extracted from this single observable. Compared to traditional observables, the energy correlator shows robustness to uncertainties that usually dominate experimental measurements and provides a promising way to improve experimental precision.
10 pages, 6 figures, matches published version
References in corpus (4)
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- The Collinear Limit of the Energy-Energy Correlator
- Rethinking Jets with Energy Correlators: Tracks, Resummation and Analytic Continuation
- A New Paradigm for Precision Top Physics: Weighing the Top with Energy Correlators
Cited by in corpus (5)
- Scaling violation in power corrections to energy correlators from the light-ray OPE
- Using the as a Standard Candle to Reach the Top: Calibrating Energy Correlator Based Top Mass Measurements
- Quantum Computing for Energy Correlators
- Energy Correlators Beyond Angles
- Observable Optimization for Precision Theory: Machine Learning Energy Correlators