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A Centrality Detector Concept

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arxiv 1405.4555 v2 pith:VNUZRJGT submitted 2014-05-18 nucl-ex

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keywords centralitycollisiondetectorheavymodelnumberapproachassumptions
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The nucleus-nucleus impact parameter and collision geometry of a heavy ion collision are typically characterized by assigning a collision "centrality". In all present heavy ion experiments centrality is measured indirectly, by detecting the number of particles or the energy of the particles produced in the interactions, typically at high rapidity. Centrality parameters are associated to the measured detector response using the Glauber model. This approach suffers from systematic uncertainties related to the assumptions about the particle production mechanism and limitations of the Glauber model. In the collider based experiments there is a unique possibility to measure centrality parameters by registering spectator fragments remaining from the collision. This approach does not require model assumptions and relies on the fact that spectators and participants are related via the total number of nucleons in the colliding species. This article describes the concept of the centrality detector for heavy ion experiment, which measures the total mass number of all fragments by measuring their deflection in the magnetic field of the collider elements.

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Cited by 1 Pith paper

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

  1. Directly probing existence of $\alpha$-cluster structure in $^{20}$Ne by relativistic heavy-ion collisions

    nucl-th 2025-02 conditional novelty 6.0 of 10

    In simulations of 20Ne+20Ne collisions, the scaled yield ratio of spectator neutrons to charged spectator nuclei is reduced by 20 to 25 percent when 20Ne has alpha-cluster structure, providing a proposed direct probe.

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