English

Novel model for particle emission in small collision systems

High Energy Physics - Phenomenology 2023-07-26 v2

Abstract

Collider experiments provide an opportunity to produce particles at close distances and momenta. The measured correlation functions between particles can provide information on both the effective emission source and the interaction potential. In recent years, experiments at the LHC have shown that precision studies of the strong interaction are possible using correlation techniques, provided a good handle on the source function. The current work presents a new numerical framework called Common Emission in CATS (CECA), capable of simulating the effective emission source of an N-body system based on the properties of the single particles. The framework differentiates between primordial particle emission and particle production through resonances, allowing to verify the hypothesis proposed by the ALICE collaboration that a common baryon-baryon emission source is present in small collision systems. The new framework is used to analyze ALICE data on pp and pΛ\Lambda correlations and compare the results to previous studies based on the common emission source scenario. It is demonstrated that the best fit to the pΛ\Lambda correlation data is obtained using a scattering length of 1.15±0.071.15\pm0.07 fm in the S=1 channel.

Keywords

Cite

@article{arxiv.2305.08441,
  title  = {Novel model for particle emission in small collision systems},
  author = {Dimitar Mihaylov and Jaime González González},
  journal= {arXiv preprint arXiv:2305.08441},
  year   = {2023}
}

Comments

version 2: corrected a typo (one-pion --> two-pion); based on a received comment, chEFT is not described as a model; an accidental second recurrence of a reference is removed

R2 v1 2026-06-28T10:34:26.844Z