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Observation of deuteron and antideuteron formation from resonance-decay nucleons.

Publication ,  Journal Article
ALICE Collaboration
Published in: Nature
December 2025

High-energy hadronic collisions generate environments characterized by temperatures above 100 MeV (refs. 1,2), about 100,000 times hotter than the centre of the Sun. At present, it is therefore unclear how light (anti)nuclei with mass number A of a few units, such as the deuteron, 3He or 4He, each bound by only a few MeV, can emerge from these collisions3,4. Here, the ALICE Collaboration reports that deuteron-pion momentum correlations in proton-proton (pp) collisions provide model-independent evidence that about 90% of the observed (anti)deuterons are produced in nuclear reactions5 following the decay of short-lived resonances, such as the Δ(1232). These findings, obtained by the ALICE Collaboration at the Large Hadron Collider, resolve a gap in our understanding of nucleosynthesis in ultrarelativistic hadronic collisions. Apart from offering insights on how (anti)nuclei are formed in hadronic collisions, the results can be used in the modelling of the production of light and heavy nuclei in cosmic rays6 and dark-matter decays7,8.

Duke Scholars

Published In

Nature

DOI

EISSN

1476-4687

Publication Date

December 2025

Volume

648

Issue

8093

Start / End Page

306 / 311

Location

England

Related Subject Headings

  • General Science & Technology
 

Citation

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Chicago
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MLA
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ALICE Collaboration. (2025). Observation of deuteron and antideuteron formation from resonance-decay nucleons. Nature, 648(8093), 306–311. https://doi.org/10.1038/s41586-025-09775-5
ALICE Collaboration. “Observation of deuteron and antideuteron formation from resonance-decay nucleons.Nature 648, no. 8093 (December 2025): 306–11. https://doi.org/10.1038/s41586-025-09775-5.
ALICE Collaboration. Observation of deuteron and antideuteron formation from resonance-decay nucleons. Nature. 2025 Dec;648(8093):306–11.
ALICE Collaboration. “Observation of deuteron and antideuteron formation from resonance-decay nucleons.Nature, vol. 648, no. 8093, Dec. 2025, pp. 306–11. Pubmed, doi:10.1038/s41586-025-09775-5.
ALICE Collaboration. Observation of deuteron and antideuteron formation from resonance-decay nucleons. Nature. 2025 Dec;648(8093):306–311.
Journal cover image

Published In

Nature

DOI

EISSN

1476-4687

Publication Date

December 2025

Volume

648

Issue

8093

Start / End Page

306 / 311

Location

England

Related Subject Headings

  • General Science & Technology