Publicación

First measurement of Dₛ₁(1⁺)(2536)⁺ and D*ₛ₂(2⁺)(2573)⁺ production in proton-proton collisions at √s = 13 TeV at the LHC

ALICE Collaboration
2025 Physical Review D DOI: 10.1103/PhysRevD.111.112005 5 vistas

Resumen

The production yields of the orbitally excited charm-strange mesons Dₛ₁(1⁺)(2536)⁺ and D*ₛ₂(2⁺)(2573)⁺ were measured for the first time in proton-proton (pp) collisions at a center-of-mass energy of √s = 13 TeV with the ALICE experiment at the LHC. The D⁺ₛ₁ and D*⁺ₛ₂ mesons were measured at midrapidity (|y| < 0.5) in minimum-bias and high-multiplicity pp collisions in the transverse-momentum interval 2 < Pᴛ < 24 GeV/c. Their production yields relative to the D⁺ₛ ground-state yield were found to be compatible between minimum-bias and high-multiplicity collisions, as well as with previous measurements in e±p and e⁺e¯ collisions. The measured D⁺ₛ₁/D⁺ₛ and D*⁺ₛ₂/D⁺ₛ yield ratios are described by statistical hadronization models and can be used to tune the parameters governing the production of excited charm-strange hadrons in Monte Carlo generators, such as PYTHIA 8.

The production yields of the orbitally excited charm-strange mesons (Formula presented) and (Formula presented) were measured for the first time in proton-proton (pp) collisions at a center-of-mass energy of (Formula presented) with the ALICE experiment at the LHC. The (Formula presented) and (Formula presented) mesons were measured at midrapidity ((Formula presented)) in minimum-bias and high-multiplicity pp collisions in the transverse-momentum interval (Formula presented). Their production yields relative to the (Formula presented) ground-state yield were found to be compatible between minimum-bias and high-multiplicity collisions, as well as with previous measurements in (Formula presented) and (Formula presented) collisions. The measured (Formula presented) and (Formula presented) yield ratios are described by statistical hadronization models and can be used to tune the parameters governing the production of excited charm-strange hadrons in Monte Carlo generators, such as pythia 8.

Autores y colaboradores

Authors

ALICE Collaboration

Palabras clave

Large Hadron Collider Proton Physics Production (economics) Nuclear physics Particle physics Economics