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Strongly Intensive Cumulants: Fluctuation Measures for Systems With Incompletely Constrained Volumes

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arxiv 1505.00261 v2 pith:V6RKYAVL submitted 2015-05-01 nucl-th math.STstat.TH

classification nucl-thmath.STstat.TH
keywords cumulantstheyvolumealongconstrainedcriticalcumulantheavy-ion
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The cumulants of thermal variables are of general interest in physics due to their extensivity and their correspondence with susceptibilities. They become especially significant near critical points of phase transitions where they diverge along with the correlation length. Cumulant measurements have been used extensively within the field of heavy-ion physics, principally as tools in the search for a hypothetical QCD critical point along the transition between hadronic matter and QGP. The volume of individual heavy-ion collisions can be only partially constrained and, as a result, cumulant measurements are significantly biased by the limited volume resolution. We propose a class of moments called strongly intensive cumulants which can be accurately measured in the presence of unconstrained volume fluctuations. Additionally, they share the same direct relationship with susceptibilities as cumulants in many cases.

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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. A Fourier analysis approach to disprove the weak Shanks conjecture

    math.CV 2025-08 reject novelty 5.0 of 10

    The abstract promises new Fourier coefficient formulas and counterexamples to the weak Shanks conjecture, but the submitted body is a different paper (a heavy-ion experiment report), so the result is not actually pres...

  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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