A search is presented for emerging jets using 140fb-1 of proton–proton collision data at s=13TeV, collected by the ATLAS experiment between 2015 and 2018. The search looks for the existence of a dark sector with symmetries similar to those in quantum chromodynamics. This dark sector is populated with dark quarks, which undergo showering similar to quarks in the Standard Model, leading to a high multiplicity of long-lived dark hadrons within a dark jet. These dark hadrons subsequently decay to Standard Model particles via a new heavy scalar mediating particle ϕ. This results in jets which contain multiple displaced vertices, known as emerging jets. This analysis targets four-jet topologies, with two emerging jets and two Standard Model jets, resulting from the decay of pair-produced scalar mediators. No significant excess above the Standard Model background is observed. For dark pion proper decay lengths of 20mm, mediator masses are excluded between 1 and 2TeV assuming a dark pion mass of 20GeV.

Search for emerging jets in pp collisions at s=13TeV with the ATLAS experiment

Panizzo G.;Monzani S.;Giugliarelli G.;Giordani M. P.;Cobal M.;
2026-01-01

Abstract

A search is presented for emerging jets using 140fb-1 of proton–proton collision data at s=13TeV, collected by the ATLAS experiment between 2015 and 2018. The search looks for the existence of a dark sector with symmetries similar to those in quantum chromodynamics. This dark sector is populated with dark quarks, which undergo showering similar to quarks in the Standard Model, leading to a high multiplicity of long-lived dark hadrons within a dark jet. These dark hadrons subsequently decay to Standard Model particles via a new heavy scalar mediating particle ϕ. This results in jets which contain multiple displaced vertices, known as emerging jets. This analysis targets four-jet topologies, with two emerging jets and two Standard Model jets, resulting from the decay of pair-produced scalar mediators. No significant excess above the Standard Model background is observed. For dark pion proper decay lengths of 20mm, mediator masses are excluded between 1 and 2TeV assuming a dark pion mass of 20GeV.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11390/1337704
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