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Unified Balance Functions

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arxiv 2209.10420 v1 pith:PM2CYFXX submitted 2022-09-21 hep-ph nucl-exnucl-th

classification hep-phnucl-exnucl-th
keywords functionsbalancegeneraldensitiesacceptanceadditionallycollisionsconditional
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The use of charge balance functions in heavy-ion collision studies was initially proposed as a probe of delayed hadronization and two-stage quark production in these collisions. It later emerged that general balance functions can also serve as a probe of the diffusivity of light quarks as well as the evolution of the systems formed in heavy-ion collisions. In this work, we reexamine the formulation of general balance functions and consider how to best define and measure these correlation functions in terms of differences of conditional densities of unlike-sign and like-sign particle pairs. We define general balance functions in terms of associated particle functions and show these obey a simple sum rule. We additionally proceed to distinguish between balance functions expressed as differences of conditional densities valid irrespective of experimental acceptance boundaries and bound balance functions that explicitly account for the limited acceptance of experiments. General balance functions are additionally extended to accommodate strange, baryon, as well as charm and bottom quantum numbers based on the densities of these quantum numbers.

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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. Probing Partonic Evolution and Hadronization via Balance Functions and Correlations of Charmed Hadrons

    hep-ex 2025-07 conditional novelty 6.0 of 10

    PYTHIA 8.3 predicts charm balance functions for pp collisions at 13 TeV, showing a D0-dominant flavor balancing hierarchy and sensitivity to Lund string fragmentation parameters.

  2. Exploring the QCD phase diagram through correlations and fluctuations

    nucl-th 2025-12 accept novelty 3.0 of 10

    A synthesis of the QCD critical point search: theoretical estimates cluster at T_C≈100–120 MeV, μ_B≈550–650 MeV, and BES-II cumulant data match non-critical baselines above 10 GeV while 7.7–9 GeV deviations remain une...

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