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Paper Citation Record · LEDGER

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions

As of 8 August 2026, this Paper Citation Record lists 34 of 34 outbound references and 0 inbound Pith citation observations for arXiv:2505.16038.

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pith.paper-citation-record.v1
2505.16038 v1

Coverage vector

measured 34 of 34 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-07T15:16:01.099293Z

measured 34 of 34 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-08T06:32:00.761636+00:00

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34 of 34 outbound references displayed

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Outbound references

Observation da76bc66-5447-4926-9e5d-8093b95ad31d · outbound

This paper cites Triangularity and Dipole Asymmetry in Heavy Ion Collisions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Triangularity and Dipole Asymmetry in Heavy Ion Collisions

Reference 1

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Observation 5653abc6-a894-4211-b945-020b31b961ee · outbound

This paper cites Mapping the hydrodynamic response to the initial geometry in heavy-ion collisions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Mapping the hydrodynamic response to the initial geometry in heavy-ion collisions

Reference 2

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Observation ae47fbb1-6d44-418d-99f7-fd35409a7519 · outbound

This paper cites Linear and cubic response to the initial eccentricity in heavy-ion collisions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Linear and cubic response to the initial eccentricity in heavy-ion collisions

Reference 3

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Observation 318b6813-87bc-4594-863c-5c75d4cfa006 · outbound

This paper cites Shrinking the Quark Gluon Plasma.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Shrinking the Quark Gluon Plasma

Reference 4

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Observation fea63d94-7f80-4839-9c35-5efae8f0d668 · outbound

This paper cites Baseline predictions of elliptic flow and fluctuations at the RHIC Beam Energy Scan using response coefficients.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Baseline predictions of elliptic flow and fluctuations at the RHIC Beam Energy Scan using response coefficients

Reference 5

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Observation 7d1c59a4-d71a-44a0-8e53-86c49e9c4cd2 · outbound

This paper cites Hybrid Color Glass Condensate and hydrodynamic description of the Relativistic Heavy Ion Collider small system scan.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Hybrid Color Glass Condensate and hydrodynamic description of the Relativistic Heavy Ion Collider small system scan

Reference 6

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Observation d5bce323-e06c-447f-bbe6-f3aae91afbfd · outbound

This paper cites Initial energy-momentum to final flow: a general framework for heavy-ion collisions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Initial energy-momentum to final flow: a general framework for heavy-ion collisions

Reference 7

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Observation d85a1b8e-8171-43f1-b7dc-c82346ac7be3 · outbound

This paper cites Net baryon diffusion in fluid dynamic simulations of relativistic heavy-ion collisions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Net baryon diffusion in fluid dynamic simulations of relativistic heavy-ion collisions

Reference 8

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Observation 519f5c97-45b9-475c-a9d6-665dc9ab243b · outbound

This paper cites The applicability of hydrodynamics in heavy ion collisions at $\sqrt{s_{\rm NN}}$= 2.4-7.7 GeV.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions The applicability of hydrodynamics in heavy ion collisions at $\sqrt{s_{\rm NN}}$= 2.4-7.7 GeV

Reference 9

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Observation 6265597a-b077-4a22-9b25-6395ef86e401 · outbound

This paper cites Particle production in a hybrid approach for a beam energy scan of Au+Au/Pb+Pb collisions between $\sqrt{s_\mathrm{NN}}$ = 4.3 GeV and $\sqrt{s_\mathrm{NN}}$ = 200.0 GeV.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Particle production in a hybrid approach for a beam energy scan of Au+Au/Pb+Pb collisions between $\sqrt{s_\mathrm{NN}}$ = 4.3 GeV and $\sqrt{s_\mathrm{NN}}$ = 200.0 GeV

Reference 10

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Observation 63c6c21a-7118-49c2-9b93-0bf205e2de72 · outbound

This paper cites Multimessenger study of baryon-charged QCD matter in heavy-ion collisions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Multimessenger study of baryon-charged QCD matter in heavy-ion collisions

Reference 11

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Observation 4368b6e3-de69-4a01-a9f0-5330d5f25bae · outbound

This paper cites Phenomenological Consequences of Enhanced Bulk Viscosity Near the QCD Critical Point.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Phenomenological Consequences of Enhanced Bulk Viscosity Near the QCD Critical Point

Reference 12

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Observation 481f19d9-5927-4cc7-99ee-67e339f326c8 · outbound

This paper cites Hydro+ in Action: Understanding the Out-of-Equilibrium Dynamics Near a Critical Point in the QCD Phase Diagram.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Hydro+ in Action: Understanding the Out-of-Equilibrium Dynamics Near a Critical Point in the QCD Phase Diagram

Reference 13

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Observation 8a8ec12b-b594-46bc-b3f9-37336da61750 · outbound

This paper cites Far-from-equilibrium search for the QCD critical point.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Far-from-equilibrium search for the QCD critical point

Reference 14

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Observation 6fdefd51-e46f-483c-8629-a733dc84a4aa · outbound

This paper cites Critical lensing and kurtosis near a critical point in the QCD phase diagram in and out-of-equilibrium.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Critical lensing and kurtosis near a critical point in the QCD phase diagram in and out-of-equilibrium

Reference 15

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Observation 99b98e03-3f8b-4d28-bdc8-6866069af9d6 · outbound

This paper cites Baryon transport and the QCD critical point.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Baryon transport and the QCD critical point

Reference 16

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Observation cef53126-a607-4b91-8482-8d0361a4f25d · outbound

This paper cites Nonmonotonic specific entropy on the transition line near the QCD critical point.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Nonmonotonic specific entropy on the transition line near the QCD critical point

Reference 17

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Observation b1863eed-83cc-4a56-8a1d-861fb53b71be · outbound

This paper cites Critical fluid dynamics in two and three dimensions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Critical fluid dynamics in two and three dimensions

Reference 18

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Observation 2a97e802-8c3e-4876-877b-b91f1e919631 · outbound

This paper cites Toward Initial Conditions of Conserved Charges Part II: The ICCING Monte Carlo Algorithm.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Toward Initial Conditions of Conserved Charges Part II: The ICCING Monte Carlo Algorithm

Reference 19

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Observation eb1229f5-922c-4e4f-befa-22eba82b0889 · outbound

This paper cites Initial state fluctuations of QCD conserved charges in heavy-ion collisions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Initial state fluctuations of QCD conserved charges in heavy-ion collisions

Reference 20

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Observation 46e99f5b-2366-454c-8f31-336685b329e6 · outbound

This paper cites BSQ Conserved Charges in Relativistic Viscous Hydrodynamics solved with Smoothed Particle Hydrodynamics.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions BSQ Conserved Charges in Relativistic Viscous Hydrodynamics solved with Smoothed Particle Hydrodynamics

Reference 21

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Observation ca6f05f5-0fc9-42bb-9f35-bf49346cbd9e · outbound

This paper cites Unlocking "imprints" of conserved charges in the initial state of heavy-ion collisions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Unlocking "imprints" of conserved charges in the initial state of heavy-ion collisions

Reference 22

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Observation 8f8503b4-702a-491b-b911-fbdd94a77240 · outbound

This paper cites The McDIPPER: A novel saturation-based 3+1D initial state model for Heavy Ion Collisions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions The McDIPPER: A novel saturation-based 3+1D initial state model for Heavy Ion Collisions

Reference 23

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Observation c87057e7-1a9a-4d99-9e81-74617e6cfc9b · outbound

This paper cites A fluid-dynamic approach to heavy-quark diffusion in the quark-gluon plasma.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions A fluid-dynamic approach to heavy-quark diffusion in the quark-gluon plasma

Reference 24

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Observation f9422c7e-ff63-481f-afdd-d405faf0ab61 · outbound

This paper cites Fluid dynamics of charm quarks in the quark--gluon plasma.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Fluid dynamics of charm quarks in the quark--gluon plasma

Reference 25

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Observation 57f0c089-6663-4229-8df4-8109a7904baa · outbound

This paper cites A collision geometry-based 3D initial condition for relativistic heavy-ion collisions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions A collision geometry-based 3D initial condition for relativistic heavy-ion collisions

Reference 26

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Observation 3e72d4b3-53db-4225-9b55-46f4a472d2c7 · outbound

This paper cites It can be downloaded from https://github.com/chunshen1987/superMC.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions It can be downloaded from https://github.com/chunshen1987/superMC

Reference 27

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Observation 83ff5557-638a-4703-9d6c-8e9cddafb107 · outbound

This paper cites The iEBE-VISHNU code package for relativistic heavy-ion collisions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions The iEBE-VISHNU code package for relativistic heavy-ion collisions

Reference 28

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Observation a0e56e45-6ff7-4e57-995e-df2b2b5277e5 · outbound

This paper cites Non-Gaussian eccentricity fluctuations.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Non-Gaussian eccentricity fluctuations

Reference 29

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Observation 96685352-664e-4a27-bd58-241557c9d3c6 · outbound

This paper cites Derivation of transient relativistic fluid dynamics from the Boltzmann equation.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Derivation of transient relativistic fluid dynamics from the Boltzmann equation

Reference 30

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Observation 69a3600c-86f5-458d-a51f-d6012387b25c · outbound

This paper cites Bayesian parameter estimation for relativistic heavy-ion collisions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Bayesian parameter estimation for relativistic heavy-ion collisions

Reference 31

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Observation 050367ab-60f9-4731-bcbd-13634cf334a8 · outbound

This paper cites Equation of state at finite densities for QCD matter in nuclear collisions.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Equation of state at finite densities for QCD matter in nuclear collisions

Reference 32

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Observation 1516e304-ef80-40ac-8822-3d3cea56fd25 · outbound

This paper cites Bulk Properties of the Medium Produced in Relativistic Heavy-Ion Collisions from the Beam Energy Scan Program.

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Bulk Properties of the Medium Produced in Relativistic Heavy-Ion Collisions from the Beam Energy Scan Program

Reference 33

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Observation c5df4e75-b1dd-41b6-82cd-83f4dd8bf78e · outbound

This paper cites Relativistic Hadron-Hadron Collisions in the Ultra-Relativistic Quantum Molecular Dynamics Model (UrQMD).

Initial-State Charge Density Predicts Final-State Net Charge Flow in Heavy-Ion Collisions Relativistic Hadron-Hadron Collisions in the Ultra-Relativistic Quantum Molecular Dynamics Model (UrQMD)

Reference 34

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