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Methods for systematic study of nuclear structure in high-energy collisions

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arxiv 2302.14026 v1 pith:DLKYHRZM submitted 2023-02-27 nucl-th

Methods for systematic study of nuclear structure in high-energy collisions

classification nucl-th
keywords collisionshigh-energynuclearstructuresystematicmethodpropertiesangular
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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There is increasing interest in using high-energy collisions to probe the structure of nuclei, in particular with the high-precision data made possible by collisions performed with pairs of isobaric species. A systematic study requires a variation of parameters representing nuclear properties such as radius, skin thickness, angular deformation, and short-range correlations, to determine the sensitivity of the various observables on each of these properties. In this work we propose a method for efficiently carrying out such study, based on the shifting of positions of nucleons in Monte-Carlo samples. We show that by using this method, statistical demands can be dramatically reduced -- potentially reducing the required number of simulated events by orders of magnitude -- paving the way for systematic study of nuclear structure in high-energy collisions,

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Cited by 2 Pith papers

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  1. Resolution-matched nuclear geometry and the nucleon-size ambiguity in relativistic heavy-ion collisions

    nucl-th 2026-02 conditional novelty 5.0

    The strong nucleon-width dependence of the Pb+Pb hadronic cross section is a geometric-inflation artifact; with the folded density fixed, σ_AA is width-insensitive and can constrain the 208Pb neutron skin to Δr_np ∈ [...

  2. The size of the quark-gluon plasma in ultracentral collisions: impact of initial density fluctuations on the average transverse momentum

    nucl-th 2025-11 unverdicted novelty 5.0

    Volume variation with multiplicity in ultracentral collisions is small when total entropy scales with nuclear mass number, as shown by relating it to initial density fluctuation profiles.