Saved in:
Bibliographic Details
Main Authors: Feng, Yi-Heng, Ko, Che Ming, Luo, Xiaofeng, Ma, Yu-Gang, Sun, Kai-Jia, Zhang, Song
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2512.16331
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866908729656475648
author Feng, Yi-Heng
Ko, Che Ming
Luo, Xiaofeng
Ma, Yu-Gang
Sun, Kai-Jia
Zhang, Song
author_facet Feng, Yi-Heng
Ko, Che Ming
Luo, Xiaofeng
Ma, Yu-Gang
Sun, Kai-Jia
Zhang, Song
contents Event-by-event fluctuations of the baryon number, which is mostly carried by protons and neutrons, in relativistic heavy-ion collisions provide a sensitive probe for locating the conjectured critical point in the quantum chromodynamics (QCD) phase diagram. Since current experiments have limited access to neutron fluctuations because detectors are largely insensitive to neutrons, measurements of (net-)proton fluctuations are often used as a proxy for (net-)baryon number fluctuations. Although direct measurements of neutron fluctuations are challenging, their information are encoded in the production and correlations of light nuclei, when they are formed through coalescence of nucleons at kinetic freeze-out. Here, we propose to unfold neutron fluctuations from correlations among light nuclei produced in heavy-ion collisions. Model calculations validate this approach and show that baryon number fluctuations can be unfolded up to the third order. For fourth and higher-order cumulants, however, the uncertainties become sizable, indicating that further methodological developments and refinements are required.
format Preprint
id arxiv_https___arxiv_org_abs_2512_16331
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Unfolding Baryon Number Fluctuations from Correlations of Light Nuclei Production in Heavy-Ion Collisions
Feng, Yi-Heng
Ko, Che Ming
Luo, Xiaofeng
Ma, Yu-Gang
Sun, Kai-Jia
Zhang, Song
Nuclear Theory
Event-by-event fluctuations of the baryon number, which is mostly carried by protons and neutrons, in relativistic heavy-ion collisions provide a sensitive probe for locating the conjectured critical point in the quantum chromodynamics (QCD) phase diagram. Since current experiments have limited access to neutron fluctuations because detectors are largely insensitive to neutrons, measurements of (net-)proton fluctuations are often used as a proxy for (net-)baryon number fluctuations. Although direct measurements of neutron fluctuations are challenging, their information are encoded in the production and correlations of light nuclei, when they are formed through coalescence of nucleons at kinetic freeze-out. Here, we propose to unfold neutron fluctuations from correlations among light nuclei produced in heavy-ion collisions. Model calculations validate this approach and show that baryon number fluctuations can be unfolded up to the third order. For fourth and higher-order cumulants, however, the uncertainties become sizable, indicating that further methodological developments and refinements are required.
title Unfolding Baryon Number Fluctuations from Correlations of Light Nuclei Production in Heavy-Ion Collisions
topic Nuclear Theory
url https://arxiv.org/abs/2512.16331