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Impact of Multiplicity Fluctuations on Entropy Scaling Across System Size

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arxiv 2106.02525 v2 pith:T27KZHWQ submitted 2021-06-04 nucl-th hep-phnucl-ex

Impact of Multiplicity Fluctuations on Entropy Scaling Across System Size

classification nucl-th hep-phnucl-ex
keywords fluctuationsmultiplicityscalingbayesiancollisionsimpactinitialtrento
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The initial state is one of the greatest uncertainties in heavy-ion collisions. A model-agnostic approach is taken in the phenomenological Trento framework which constrains parameters using Bayesian analysis. However, the color-glass condensate (CGC) effective theory predicts initial energy densities that lie outside the recent Bayesian analyses due, in part, to the assumption in Trento of event-by-event multiplicity fluctuations following a $\Gamma$ distribution. We compare the Trento-preferred $\sqrt{T_{A}T_{B}}$ scaling to CGC-like $T_{A}T_{B}$ scaling coupled with log-normal fluctuations in $AuAu$ and $dAu$ collisions and find there is a significant impact on the multiplicity distributions and on the eccentricities, which may affect the extraction of viscosity in small systems.

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  1. 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.