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Imaging Freeze-out Sources and Extracting Strong Interaction Parameters in Relativistic Heavy-Ion Collisions

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arxiv 2411.08718 v3 pith:SKLGJLRI submitted 2024-11-13 nucl-th nucl-ex

classification nucl-thnucl-ex
keywords collisionsfreeze-outantiprotonsdistributionheavy-ioninteractionprotonssource
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

By combining femtoscopic interferometry with an optical deblurring algorithm, we present a novel method to image the source in heavy-ion collisions (HICs) while simultaneously determining the interaction strength between particle pairs. The spatial distribution of the emission source has been reconstructed for protons ($p$) and antiprotons ($\bar{p}$) from the respective $pp$ and $\bar{p}\bar{p}$ correlation functions in Au+Au collisions at $\sqrt{S_{\rm NN}}=200$ GeV. Within experimental uncertainties, protons and antiprotons share the same freeze-out distribution showing higher density in the center compared to the widely assumed Gaussian shape. The results evidence the matter-antimatter symmetry in coordinate space at the moment of freeze-out before the nucleons are fully randomized in the collisions.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Femtoscopy Measurement with S$\pi$RIT TPC in Radioactive BeamHeavy-ion Collisions

    physics.ins-det 2026-07 conditional novelty 5.0 of 10

    A first proton-proton femtoscopy correlation function measured with the SπRIT TPC in 132Sn+124Sn collisions at 270 MeV/u shows the expected attractive-interaction peak near 20 MeV/c.

  2. Calculation of Particle Pair Correlation Functions with Classical Trajectory Approximation

    nucl-th 2025-10 conditional novelty 5.0 of 10

    A classical-trajectory Monte Carlo model with a self-consistent thermal source reproduces measured fragment correlation functions and shows they are governed by source size, not temperature.

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