4.7 Article

Λ(1405) mediated triangle singularity in the K-d → pΣ- reaction

Journal

EUROPEAN PHYSICAL JOURNAL C
Volume 82, Issue 11, Pages -

Publisher

SPRINGER
DOI: 10.1140/epjc/s10052-022-10985-8

Keywords

-

Funding

  1. spanish national grant [CIDEGENT/2019/015]
  2. Spanish Ministerio de Economia y Competitividad [PID2019-106080GB-C21]
  3. European FEDER funds [FIS2017-84038-C2-1-P B, FIS2017-84038-C2-2-P B]
  4. European Union
  5. Generalitat Valenciana [824093, STRONG-2020]
  6. Czech Science Foundation [PROMETEO/2020/023]
  7. European Social Fund [19-19640S]
  8. National Natural Science Foundation of China [APOSTD-2021-112]
  9. [11975009]
  10. [12175066]
  11. [12147219]

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We study for the first time two reactions close to threshold and find that they are driven by a triangle mechanism involving the Lambda(1405), a proton, and a neutron as intermediate states. We also find that a mechanism involving virtual pion exchange dominates and the higher mass Lambda(1405) state contributes the most to the process.
We study for the first time the p Sigma(-) -> K- d and K- d -> p Sigma(-) reactions close to threshold and show that they are driven by a triangle mechanism, with the Lambda(1405), a proton and a neutron as intermediate states, which develops a triangle singularity close to the (K) over bard threshold. We find that a mechanism involving virtual pion exchange and the K- p -> pi(+)Sigma(-) amplitude dominates over another one involving kaon exchange and the K- p -> K- p amplitude. Moreover, of the two Lambda(1405) states, the one with higher mass around 1420 MeV, gives the largest contribution to the process. We show that the cross section, well within measurable range, is very sensitive to different models that, while reproducing (K) over barN observables above threshold, provide different extrapolations of the (K) over barN amplitudes below threshold. The observables of this reaction will provide new constraints on the theoretical models, leading to more reliable extrapolations of the (K) over barN amplitudes below threshold and to more accurate predictions of the Lambda(1405) state of lower mass.

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