arXiv:2402.17714·v3·High Energy Physics — Phenomenology
Cluster Scanning: a novel approach to resonance searches
Ivan Oleksiyuk🇨🇭 · John Andrew Raine🇨🇭 · Michael Krämer🇩🇪 · Svyatoslav Voloshynovskiy🇨🇭 · Tobias Golling🇨🇭
Abstract
We propose a new model-independent method for new physics searches called Cluster Scanning. It uses the k-means algorithm to perform clustering in the space of low-level event or jet observables, and separates potentially anomalous clusters to construct a signal-enriched region. The spectra of a selected observable (e.g. invariant mass) in these two regions are then used to determine whether a resonant signal is present. A pseudo-analysis on the LHC Olympics dataset with a resonance shows that Cluster Scanning outperforms the widely used 4-parameter functional background fitting procedures, reducing the number of signal events needed to reach a significant access by a factor of 0.61. Emphasis is placed on the speed of the method, which allows the test statistic to be calibrated on synthetic data.
Comments: 33 pages, 11 figures