Constraining the f0(980) Structure and Formation Dynamics via Anisotropy-Response Scaling
Roy A. Lacey
Abstract
A species-resolved anisotropy-response scaling framework is used to investigate the structure and formation dynamics of the f0(980) in relativistic nuclear collisions. Published measurements in high-multiplicity p+Pb collisions at sNN=8.16~TeV exhibit broad scaling closure under a single-meson response construction, with a small effective final-state response, ζf00.04, whereas a symmetric K K constituent-response construction gives substantially poorer closure. An explicitly molecular K K calculation also exhibits single-meson-like scaling but gives a substantially larger effective final-state response, ζf00.16. Thus, single-meson scaling alone is not a unique structural discriminator. The combined response construction and ζf0 constraints characterize the measured f0(980) by a single-meson-like anisotropy response with weak final-state sensitivity, distinctly different from the molecular benchmark. These results establish anisotropy-response scaling as a new experimental probe of f0(980) formation dynamics and motivate systematic tests across collision systems and beam energies.
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