A search for a long-lived, heavy neutral lepton (N) in 139 fb^{-1} of sqrt[s]=13 TeV pp collision data collected by the ATLAS detector at the Large Hadron Collider is reported. The N is produced via W→Nμ or W→Ne and decays into two charged leptons and a neutrino, forming a displaced vertex. The N mass is used to discriminate between signal and background. No signal is observed, and limits are set on the squared mixing parameters of the N with the left-handed neutrino states for the N mass range 3 GeV<15 GeV. For the first time, limits are given for both single-flavor and multiflavor mixing scenarios motivated by neutrino flavor oscillation results for both the normal and inverted neutrino-mass hierarchies.
Search for heavy neutral leptons in decays of W bosons using a dilepton displaced vertex in s√=13 TeV pp collisions with the ATLAS detector / Add, G., Aloisio, A., Alviggi, M., Canale, V., Cirotto, F., Della Pietra, M., Merola, L., Massarotti, P., Rossi, E., Conventi, F., Izzo, V., Sekhniaidze, G.G., Iengo, P., Di Donato, C., De Asmundis, R., Carlino, G., Loffredo, S., Collaboration, A.. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 131:6(2023), p. 061803. [10.1103/physrevlett.131.061803]
Search for heavy neutral leptons in decays of W bosons using a dilepton displaced vertex in s√=13 TeV pp collisions with the ATLAS detector
A. Aloisio;M. Alviggi;V. Canale;F. Cirotto;M. Della Pietra;L. Merola;P. Massarotti;E. Rossi;S. Loffredo;
2023
Abstract
A search for a long-lived, heavy neutral lepton (N) in 139 fb^{-1} of sqrt[s]=13 TeV pp collision data collected by the ATLAS detector at the Large Hadron Collider is reported. The N is produced via W→Nμ or W→Ne and decays into two charged leptons and a neutrino, forming a displaced vertex. The N mass is used to discriminate between signal and background. No signal is observed, and limits are set on the squared mixing parameters of the N with the left-handed neutrino states for the N mass range 3 GeV<15 GeV. For the first time, limits are given for both single-flavor and multiflavor mixing scenarios motivated by neutrino flavor oscillation results for both the normal and inverted neutrino-mass hierarchies.| File | Dimensione | Formato | |
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PhysRevLett.131.061803.pdf
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