arXiv · 2406.00072
Methodology for Analyzing Proton Multiplicity Fluctuations with Azimuthal Partitions in Heavy-Ion Collisions
Abstract
A primary objective in high-energy heavy-ion collisions is to investigate the phase transition between confined and deconfined color matter. Complementary to the cumulants of conserved charges integrated over the full azimuth, we introduce a novel experimental approach to explore particle fluctuations in azimuthal partitions, which are potentially sensitive to the first-order phase transition in heavy-ion collisions. We evaluate proton multiplicity ($N_w$) fluctuations in azimuthal partitions of width $w$ to quantitatively estimate the clustering tendency among these protons. The $\Delta \sigma^2$ observable is defined as the normalized difference between the variance of the $N_w$ distribution and the binomial baseline. We demonstrate the feasibility and characteristics of this observable through simulations using the AMPT and MUSIC+FIST models. We also use a Gaussian correlation model to illustrate that the dependence of $\Delta \sigma^2$ on $w$ can be parameterized to accurately extract the strength and the range of the input interaction among protons.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Dylan Neff, Zhongling Ji, Roli Esha, Gang Wang, Huan Huang. 2024-05-30. Methodology for Analyzing Proton Multiplicity Fluctuations with Azimuthal Partitions in Heavy-Ion Collisions. https://arxiv.org/abs/2406.00072
Cite the original work for its findings. Save a collection to share your selection of sources.