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arXiv:2312.06526·v4·High Energy Physics — Phenomenology

Exploring hidden sectors with two-particle angular correlations at future colliders

E. Musumeci (1)🇪🇸 · A. Irles (1)🇪🇸 · R. Perez-Ramos (2,3)🇫🇷 · I. Corredoira (4)🇪🇸 · E. Sarkisyan-Grinbaum (5,6)🇨🇭 · V. A. Mitsou (1,7)🇪🇸 · M. A. Sanchis-Lozano (1) ((1) Instituto de Física Corpuscular, CSIC - University of Valencia, Paterna (Valencia), Spain, (2) DRII-IPSA, Ivry-sur-Seine, France, (3) Laboratoire de Physique Th éorique et Hautes Energies (LPTHE), Sorbonne Université et CNRS, Paris Cedex, France, (4) Instituto Galego de Física de Altas Enerxìas (IGFAE, USC), Spain, (5) Experimental Physics Department, CERN, Geneva, Switzerland, (6) Department of Physics, The University of Texas at Arlington, Arlington, TX, USA, (7) Physics Division, School of Applied Mathematical and Physical Sciences, National Technical University of Athens, Athens, Greece)🇪🇸

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Abstract

Future colliders are expected to play a fundamental role in measuring Standard Model (SM) parameters with unprecedented precision and in probing physics beyond the SM (BSM). This study investigates two-particle angular correlation distributions involving final-state SM charged hadrons. Unexpected correlation structures in these distributions is considered to be a hint for new physics perturbing the QCD partonic cascade and thereby modifying azimuthal and (pseudo)rapidity correlations. Using Pythia8 Monte Carlo generator and fast simulation, including selection cuts and detector effects, we study potential structures in the two-particle angular correlation function. We adopt the QCD-like Hidden Valley (HV) scenario as implemented in Pythia8 generator, with relatively light HV -quarks (below about 100 GeV), to illustrate the potential of this method.

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