Deuteron identification via time of flight with LHCb
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Publication date
2025-11-19ISSN
1434-6052
Abstract
It is shown that the timing capabilities of the LHCb detector operated during the LHC Run 2 can be used to identify light ion particles with momenta of a few GeV/c. This is achieved by estimating the particle time of flight through a newly developed technique. A dedicated reconstruction procedure and a neural-network-based estimator of the particle speed have been developed to enable deuteron identification by suppressing the abundant background from lighter particles. The performance of the identification procedure is demonstrated in a sample of proton-helium collisions at sNN = 110 GeV, where the production of deuteron and triton particles is observed. This novel approach opens the way to study deuteron and antideuteron production for different collision systems at different energy scales, exploiting the rich dataset collected by the LHCb experiment.
Document Type
Article
Document version
Published version
Language
English
Subject (CDU)
53 - Physics
530.1 - General principles of physics
539 - Physical nature of matter
Keywords
Pages
17 p.
Publisher
Springer
Is part of
The European Physical Journal C, 2025. Vol. 85, 1329
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© CERN
Except where otherwise noted, this item's license is described as http://creativecommons.org/licenses/by/4.0/


