English

A new basic air shower observable sensitive to the cosmic-ray elemental mass

High Energy Astrophysical Phenomena 2024-12-10 v1

Abstract

Based on a Monte Carlo simulation study of vertical extensive air showers (EAS) at the KASCADE location we introduce a new simple observable ηρ(45;310)\eta_{\rho{(45;310)}} (in short ηρ\eta_{\rho}) - the ratio between two lateral electron densities of an EAS measured at two well-defined radial distances indicated by the characteristic radial feature of the local age parameter (LAP). Our analyses of simulated data generated by the Group I nuclei with cosmic-ray elemental masses, Aactual=1,4,12,16,24,32,40,56A_{\text{actual}}=1,4,12,16,24,32,40,56, observed a double correlation of ηρ\eta_{\rho} with, (i) the lateral shower age savs_{\text{av}}, and (ii) AactualA_{\text{actual}} of the EAS initiating primary particle. Applying the first correlation to a new set of simulated showers initiated by the Group II nuclei with Aactual=7,14,20,28,40,52A_{\text{actual}}=7,14,20,28,40,52, the average difference between the lateral shower age savs_{\text{av}} obtained directly from the conventional LAP approach and the estimated one sests_{\text{est}} is found to be close to 00. The second correlation involving ηρ\eta_{\rho} with AactualA_{\text{actual}} applied to the set of such showers estimates the average atomic mass <lnAest><\ln{A_{\text{est}}}> of their shower initiating primaries, utilizing the ηρ\eta_{\rho}s. Results of the work revealed that the method of estimating the lateral shower age is almost high-energy interaction model-independent. A certain level of model dependence is albeit found in the case of <lnAest><\ln{A_{\text{est}}}> estimation.

Keywords

Cite

@article{arxiv.2412.05727,
  title  = {A new basic air shower observable sensitive to the cosmic-ray elemental mass},
  author = {Animesh Basak and Rajat K. Dey},
  journal= {arXiv preprint arXiv:2412.05727},
  year   = {2024}
}

Comments

18 pages, 43 figures

R2 v1 2026-06-28T20:26:41.530Z