Baryon Electric Charge Correlation as QCD Magnetometer

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Main Authors: Ding, Heng-Tong, Gu, Jin-Biao, Kumar, Arpith, Li, Sheng-Tai
Format: Preprint
Published: 2025
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author Ding, Heng-Tong
Gu, Jin-Biao
Kumar, Arpith
Li, Sheng-Tai
author_facet Ding, Heng-Tong
Gu, Jin-Biao
Kumar, Arpith
Li, Sheng-Tai
contents The detection of strong magnetic fields in peripheral heavy-ion collisions is crucial for observing effects such as the chiral magnetic effect but has proven exceptionally difficult. To address this, we propose the baryon electric charge correlation $χ^{\rm BQ}_{11}$ and the chemical potential ratio $μ_{\rm Q}/μ_{\rm B}$ as sensitive probes of magnetic fields, based on (2+1)-flavor lattice QCD simulations at the physical pion mass. Along the transition line, $χ^{\rm BQ}_{11}$ and $(μ_{\rm Q}/μ_{\rm B})_{\rm LO}$ in Pb-Pb collisions increase by factors of 2.1 and 2.4 at $eB \simeq 8M_π^2$, respectively. To bridge theoretical predictions with experimental observables, we implement systematic kinematic cuts that emulate detector acceptances of the STAR and ALICE experiments within the hadron resonance gas model. This allows us to construct experimentally relevant proxy observables. Furthermore, we demonstrate that $(μ_{\rm Q}/μ_{\rm B})_{\rm LO}$ is also sensitive to the collision system, showing a $1.5$-fold increase from Zr-Zr to Ru-Ru isobar collisions. Our findings offer new insights into thermo-magnetic effects and provide experimentally relevant guidance for the detection of magnetic fields in heavy-ion collisions.
format Preprint
id arxiv_https___arxiv_org_abs_2508_17021
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Baryon Electric Charge Correlation as QCD Magnetometer
Ding, Heng-Tong
Gu, Jin-Biao
Kumar, Arpith
Li, Sheng-Tai
High Energy Physics - Lattice
High Energy Physics - Phenomenology
Nuclear Experiment
Nuclear Theory
The detection of strong magnetic fields in peripheral heavy-ion collisions is crucial for observing effects such as the chiral magnetic effect but has proven exceptionally difficult. To address this, we propose the baryon electric charge correlation $χ^{\rm BQ}_{11}$ and the chemical potential ratio $μ_{\rm Q}/μ_{\rm B}$ as sensitive probes of magnetic fields, based on (2+1)-flavor lattice QCD simulations at the physical pion mass. Along the transition line, $χ^{\rm BQ}_{11}$ and $(μ_{\rm Q}/μ_{\rm B})_{\rm LO}$ in Pb-Pb collisions increase by factors of 2.1 and 2.4 at $eB \simeq 8M_π^2$, respectively. To bridge theoretical predictions with experimental observables, we implement systematic kinematic cuts that emulate detector acceptances of the STAR and ALICE experiments within the hadron resonance gas model. This allows us to construct experimentally relevant proxy observables. Furthermore, we demonstrate that $(μ_{\rm Q}/μ_{\rm B})_{\rm LO}$ is also sensitive to the collision system, showing a $1.5$-fold increase from Zr-Zr to Ru-Ru isobar collisions. Our findings offer new insights into thermo-magnetic effects and provide experimentally relevant guidance for the detection of magnetic fields in heavy-ion collisions.
title Baryon Electric Charge Correlation as QCD Magnetometer
topic High Energy Physics - Lattice
High Energy Physics - Phenomenology
Nuclear Experiment
Nuclear Theory
url https://arxiv.org/abs/2508.17021