Szczegóły publikacji

Opis bibliograficzny

Long-lived particle reconstruction downstream of the LHCb magnet / Aaij R., Bhom Jihyun, Borsuk Józef, Brodzicka Jolanta, Chernov Aleksei, Dudek Maria, Dziurda Agnieszka, Giza Maciej, Goncerz Mateusz, Juszczak Izabela, Kazanecki Michał, Kucharczyk Marcin, Lesiak Tadeusz, Malczewski Jakub, Witek Mariusz, Zdybał Miłosz et al. [LHCb Collab.] // European Physical Journal C. — 2025 — vol. 85(1), s. 7, DOI 10.1140/epjc/s10052-024-13686-6.

Autorzy (1134)

Kolaboracje

  • LHCb Collab.

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Dane bibliometryczne

ID BaDAP1
Typ publikacjiartykuł
Rok publikacji2025
Creative CommonsCreative Commons
Otwarty dostęptak

Informacje o źródle

Czasopismo/seriaEuropean Physical Journal C
Tom85
Zeszyt1
Strony lub numer artykułu7

Bazy zewnętrzne

Abstract

Abstract

Charged-particle trajectories are usually reconstructed with the LHCb detector using combined information from the tracking devices placed upstream and downstream of the 4 T m dipole magnet. Trajectories reconstructed using only information from the tracker downstream of the dipole magnet, which are referred to as T tracks, have not been used for physics analysis to date. The challenges of the reconstruction of long-lived particles with T tracks for physics use are discussed and solutions are proposed. The feasibility and the tracking performance are studied using samples of long-lived Λ and KS0 hadrons decaying between 6.0 and 7.6 m downstream of the proton–proton collision point, thereby traversing most of the magnetic field region and providing maximal sensitivity to magnetic and electric dipole moments. The reconstruction can be expanded upstream to about 2.5 m for use in direct searches of exotic long-lived particles. The data used in this analysis have been recorded between 2015 and 2018 and correspond to an integrated luminosity of 6 fb-1. The results obtained demonstrate the possibility to further extend the decay volume and the physics reach of the LHCb experiment.

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