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Paper Citation Record · LEDGER

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics

As of 13 August 2026, this Paper Citation Record lists 71 of 71 outbound references and 2 inbound Pith citation observations for arXiv:2411.19708.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2411.19708 v3

Coverage vector

measured 71 of 71 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-12T06:01:04.781735Z

measured 73 of 73 standing notices

One-hop event checks from named stored sources.

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measured 2 of 2 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-12T06:01:11.220389Z

measured 0 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: arxiv_reference, observed 2026-05-18T18:51:46.032777Z

Reference resolution

71 of 71 outbound references displayed

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External citation measurements

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Outbound references

Observation 0f477586-24d4-4b4c-954c-9a49785d7c62 · outbound

This paper cites The total energy at early times is equal to the initial transverse energy d E0 ⊥ dη, since longitudinal momenta (and masses) vanish: dE0 ⊥ dη = τ0 Z x⊥ e(x⊥).

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics The total energy at early times is equal to the initial transverse energy d E0 ⊥ dη, since longitudinal momenta (and masses) vanish: dE0 ⊥ dη = τ0 Z x⊥ e(x⊥)

Reference 1

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Observation 56508e5f-9225-435c-b9d1-ac95a4d7ca2e · outbound

This paper cites The sign in Eq.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics The sign in Eq

Reference 2

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This paper cites from the cell whose lower left corner is the grid point at x⊥ + (a⌊∆τ ′/a⌋, 0), where a is the grid spacing, and follows the circle counterclockwise.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics from the cell whose lower left corner is the grid point at x⊥ + (a⌊∆τ ′/a⌋, 0), where a is the grid spacing, and follows the circle counterclockwise

Reference 3

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Observation 8e6cbc20-c4ad-4bc1-9f9e-b7d5dc7e8f09 · outbound

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Unresolved cited work

Reference 4

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Observation 7cccb53e-4285-4b7e-a86d-a57452c0e7a0 · outbound

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Unresolved cited work

Reference 5

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Observation f53ddce3-af9f-48f6-b8be-773911a39de9 · outbound

This paper cites Towards the Little Bang Standard Model.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Towards the Little Bang Standard Model

Reference 6

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Observation ae092494-60fb-43de-a035-ca8a95127f56 · outbound

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

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics The iEBE-VISHNU code package for relativistic heavy-ion collisions

Reference 7

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Observation 2c284047-15ef-47de-be36-ee8428ba8a76 · outbound

This paper cites Hydrodynamic Predictions for Pb+Pb Collisions at 5.02 A TeV.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Hydrodynamic Predictions for Pb+Pb Collisions at 5.02 A TeV

Reference 8

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Observation 3ee3f2b0-8ade-49b4-8119-4fe7c0470715 · outbound

This paper cites The JETSCAPE framework.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics The JETSCAPE framework

Reference 9

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Observation 467c9317-05fe-4f49-b469-229a0ac135d0 · outbound

This paper cites Bayesian analysis of heavy ion collisions with the heavy ion computational framework Trajectum.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Bayesian analysis of heavy ion collisions with the heavy ion computational framework Trajectum

Reference 10

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Observation c6babf13-4bac-4dee-bda2-36a6c318c7dd · outbound

This paper cites Multi-system Bayesian constraints on the transport coefficients of QCD matter.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Multi-system Bayesian constraints on the transport coefficients of QCD matter

Reference 11

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Observation f019d607-feda-4ea7-a569-f73a31e954fc · outbound

This paper cites Thermalization of gluons in ultrarelativistic heavy ion collisions by including three-body interactions in a parton cascade.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Thermalization of gluons in ultrarelativistic heavy ion collisions by including three-body interactions in a parton cascade

Reference 12

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This paper cites Perturbative QCD Calculations of Elliptic Flow and Shear Viscosity in Au+Au Collisions at $\sqrt{s_{NN}}=200$ GeV.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Perturbative QCD Calculations of Elliptic Flow and Shear Viscosity in Au+Au Collisions at $\sqrt{s_{NN}}=200$ GeV

Reference 13

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Observation 862402bd-bf35-4190-bd83-236f521e2a92 · outbound

This paper cites A Multi-Phase Transport Model for Relativistic Heavy Ion Collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics A Multi-Phase Transport Model for Relativistic Heavy Ion Collisions

Reference 14

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Observation c8f988e8-6ff5-411b-a0e8-3ce2d2930c55 · outbound

This paper cites Parton-Hadron-String Dynamics at Relativistic Collider Energies.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Parton-Hadron-String Dynamics at Relativistic Collider Energies

Reference 15

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This paper cites Effective QCD and transport description of dilepton and photon production in heavy-ion collisions and elementary processes.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Effective QCD and transport description of dilepton and photon production in heavy-ion collisions and elementary processes

Reference 16

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Observation cae64a46-d16b-4dd3-8934-bfd2f8a65f27 · outbound

This paper cites Development of transverse flow at small and large opacities in conformal kinetic theory.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Development of transverse flow at small and large opacities in conformal kinetic theory

Reference 17

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Hydrodynamization in kinetic theory: Transient modes and the gradient expansion

Reference 18

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This paper cites On the hydrodynamic attractor of Yang-Mills plasma.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics On the hydrodynamic attractor of Yang-Mills plasma

Reference 19

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Observation 3f82b9f2-905b-401e-9f19-3368cdfcdfb5 · outbound

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Relativistic Hydrodynamic Attractors with Broken Symmetries: Non-Conformal and Non-Homogeneous

Reference 20

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Equilibration of weakly coupled QCD plasmas

Reference 21

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This paper cites Equilibration of the Quark-Gluon Plasma at finite net-baryon density in QCD kinetic theory.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Equilibration of the Quark-Gluon Plasma at finite net-baryon density in QCD kinetic theory

Reference 22

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Matching the Nonequilibrium Initial Stage of Heavy Ion Collisions to Hydrodynamics with QCD Kinetic Theory

Reference 23

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics KøMPøST,

Reference 24

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Pre-hydrodynamic evolution and its impact on quark-gluon plasma signatures

Reference 25

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Imprints of fluctuating proton shapes on flow in proton-lead collisions at the LHC

Reference 26

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics The 3D structure of anisotropic flow in small collision systems at the Relativistic Heavy Ion Collider

Reference 27

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics The "Ridge" in Proton-Proton Scattering at 7 TeV

Reference 28

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Evidence for flow in pPb collisions at 5 TeV from v2 mass splitting

Reference 29

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Eccentric protons? Sensitivity of flow to system size and shape in p+p, p+Pb and Pb+Pb collisions

Reference 30

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics The smallest fluid on earth

Reference 31

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Hot spots and gluon field fluctuations as causes of eccentricity in small systems

Reference 32

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Azimuthal anisotropies in p+Pb collisions from classical Yang-Mills dynamics

Reference 33

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Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Finite Numbers of Sources, Particle Correlations and the Color Glass Condensate

Reference 34

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Observation 3098b7e0-cba5-4516-8c8f-5cff3ec2509b · outbound

This paper cites Rapidity dependence of initial state geometry and momentum correlations in p+Pb collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Rapidity dependence of initial state geometry and momentum correlations in p+Pb collisions

Reference 35

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Observation 6dc5e338-b911-4767-b323-00c86365eb96 · outbound

This paper cites Flow in AA and pA as an interplay of fluid-like and non-fluid like excitations.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Flow in AA and pA as an interplay of fluid-like and non-fluid like excitations

Reference 36

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Observation 12fca104-504f-43ce-8e15-8bb95f71c35c · outbound

This paper cites Hydrodynamization in systems with detailed transverse profiles.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Hydrodynamization in systems with detailed transverse profiles

Reference 37

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source=pdf_text observed=2026-08-12T06:01:04.494865Z digest=sha256:a11c4052a8bf23f8b8699cb561f96de9801e56efdb401688f9b39c472762c313

Observation 43578925-a109-4b31-9de5-4d155482e29a · outbound

This paper cites Opacity dependence of transverse flow, pre-equilibrium and applicability of hydrodynamics in heavy-ion collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Opacity dependence of transverse flow, pre-equilibrium and applicability of hydrodynamics in heavy-ion collisions

Reference 38

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Observation 0444a951-b20e-42e5-a8ac-4915f4c11afb · outbound

This paper cites Establishing the Range of Applicability of Hydrodynamics in High-Energy Collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Establishing the Range of Applicability of Hydrodynamics in High-Energy Collisions

Reference 39

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source=pdf_text observed=2026-08-12T06:01:04.502785Z digest=sha256:3632e45aeffd5190d30a342eb226ebaac42cdeed0c6c91c62bbdceea9cc26dd5

Observation 4b88209f-4ca3-404b-bd36-f0a8383569a5 · outbound

This paper cites Collective dynamics in heavy and light-ion collisions -- II) Determining the origin of collective behavior in high-energy collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Collective dynamics in heavy and light-ion collisions -- II) Determining the origin of collective behavior in high-energy collisions

Reference 40

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source=pdf_text observed=2026-08-12T06:01:04.506435Z digest=sha256:7fd12a5c2f1e9ddc80cb2b7594ab0e8174ee4cfca7cc8ab3755f2141b940ae10

Observation dc1d6cc2-7554-401c-b3fb-9c2ecb55a255 · outbound

This paper cites Plot data for.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Plot data for

Reference 41

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Observation 6e4397f2-1631-47a5-8658-8c7c1a88facd · outbound

This paper cites The equation of state in (2+1)-flavor QCD.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics The equation of state in (2+1)-flavor QCD

Reference 42

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source=pdf_text observed=2026-08-12T06:01:04.513882Z digest=sha256:c1eb3842e09f767ba58560723832640a850c83fb7eabe1763d7d528e8f04a5bb

Observation 7029ccef-5e25-4b26-8f77-39066be0bae8 · outbound

This paper cites Lattice QCD for Cosmology.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Lattice QCD for Cosmology

Reference 43

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source=pdf_text observed=2026-08-12T06:01:04.517712Z digest=sha256:e3d6a39081ebea6da4714cc9718ae9ac2011a2428d7f6861c9ebbdbb2bf1aa83

Observation 8b28b3fe-c3ec-448c-8e15-31c551ba5583 · outbound

This paper cites an unresolved cited work.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Unresolved cited work

Reference 44

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source=pdf_text observed=2026-08-12T06:01:04.521360Z digest=sha256:f10b12033db820ae91a01b9a3a0a0dd650c360bfeff9208d9f878309b456ec89

Observation 1e5086b9-317e-497f-8fbd-74f4cbd3ed00 · outbound

This paper cites New theoretical developments on the early-time dynamics and approach to equilibrium in Heavy-Ion collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics New theoretical developments on the early-time dynamics and approach to equilibrium in Heavy-Ion collisions

Reference 45

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Observation dd539522-9e06-454e-9549-dacd5f5aef1f · outbound

This paper cites Elliptic Flow and HBT in non-central Nuclear Collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Elliptic Flow and HBT in non-central Nuclear Collisions

Reference 46

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source=pdf_text observed=2026-08-12T06:01:04.530023Z digest=sha256:04fb82c60c7f10a347ce52f3076c1f86aefa9e76a7131ac42e7f71b9cbba63ae

Observation 2d854494-0172-4eef-a91d-82ee6461e4a3 · outbound

This paper cites Anisotropic flow far from equilibrium.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Anisotropic flow far from equilibrium

Reference 47

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Observation d2363d14-27f7-4643-8568-bef04f971c5c · outbound

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

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Derivation of transient relativistic fluid dynamics from the Boltzmann equation

Reference 48

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source=pdf_text observed=2026-08-12T06:01:04.537343Z digest=sha256:1ef77fb117e1a1cfd8596e7631a6facd7bc3407b43525e5c42eba99c9d1a6888

Observation 61792479-be71-4bc8-943a-251eb61ec3de · outbound

This paper cites Relativistic dissipative hydrodynamics from kinetic theory with relaxation time approximation.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Relativistic dissipative hydrodynamics from kinetic theory with relaxation time approximation

Reference 49

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source=pdf_text observed=2026-08-12T06:01:04.542533Z digest=sha256:8ab7e5da42e15744d66b6209788021de10496b4bbdf606e249635e30a07161e9

Observation 96245063-10c6-47f4-bfb9-e98e4f0a2f93 · outbound

This paper cites On the relative importance of second-order terms in relativistic dissipative fluid dynamics.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics On the relative importance of second-order terms in relativistic dissipative fluid dynamics

Reference 50

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source=pdf_text observed=2026-08-12T06:01:04.546865Z digest=sha256:02b3867ef7a2329ce9f4eb14166db54c003e8d59106956bc2c2d5bf7e45c6866

Observation e0ea8827-d272-4f74-8003-f96e7ca2878c · outbound

This paper cites Transport coefficients of second-order relativistic fluid dynamics in the relaxation-time approximation.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Transport coefficients of second-order relativistic fluid dynamics in the relaxation-time approximation

Reference 51

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source=pdf_text observed=2026-08-12T06:01:04.550442Z digest=sha256:9c53ed49a5633896205f200a54983451c1430bd3c1268c29d435089f394244f0

Observation b42fdec1-e01e-40c7-b7f1-82f397f51222 · outbound

This paper cites A 3+1 dimensional viscous hydrodynamic code for relativistic heavy ion collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics A 3+1 dimensional viscous hydrodynamic code for relativistic heavy ion collisions

Reference 52

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source=pdf_text observed=2026-08-12T06:01:04.554952Z digest=sha256:c137874d793a06b17efac98ee3aa4cae04f00f80eb28257671ab1b3ce69ebd17

Observation 4a6362cf-e77a-4380-9749-4b0de52fc1e3 · outbound

This paper cites Alternative ansatz to wounded nucleon and binary collision scaling in high-energy nuclear collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Alternative ansatz to wounded nucleon and binary collision scaling in high-energy nuclear collisions

Reference 53

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source=pdf_text observed=2026-08-12T06:01:04.558853Z digest=sha256:dea1795088f7c65154e7f8c2dbd502eb7b5d1bac74690a05ee57fc1beb6249ba

Observation acdc8ae2-edfd-45a6-9bfd-ccda6206b3da · outbound

This paper cites Predictions and postdictions for relativistic lead and oxygen collisions with Trajectum.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Predictions and postdictions for relativistic lead and oxygen collisions with Trajectum

Reference 54

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source=pdf_text observed=2026-08-12T06:01:04.563132Z digest=sha256:4d85a4bdf4bbbd54c214f0ab5560415c96509c0277937aa81844ff74f01483c5

Observation 49646c99-a380-4957-b62e-21b49cb8d79b · outbound

This paper cites Bayesian calibration of viscous anisotropic hydrodynamic simulations of heavy-ion collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Bayesian calibration of viscous anisotropic hydrodynamic simulations of heavy-ion collisions

Reference 55

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source=pdf_text observed=2026-08-12T06:01:04.568673Z digest=sha256:d5ffd1266acc8579a5d948a1c1f9768838b32acac5e14a66bcde1f13cd1d4afd

Observation 0e269fc0-e5e5-4a73-a028-533702a5ef16 · outbound

This paper cites A Monte Carlo generator of nucleon configurations in complex nuclei including Nucleon-Nucleon correlations.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics A Monte Carlo generator of nucleon configurations in complex nuclei including Nucleon-Nucleon correlations

Reference 56

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source=pdf_text observed=2026-08-12T06:01:04.573249Z digest=sha256:cae2f75345297030cc8419f27f1cfd5bfc20704f78e9fcb68fe2a63195e5333f

Observation 844f2117-a76a-4755-b931-491ca329312f · outbound

This paper cites Initial state anisotropies and their uncertainties in ultrarelativistic heavy-ion collisions from the Monte Carlo Glauber model.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Initial state anisotropies and their uncertainties in ultrarelativistic heavy-ion collisions from the Monte Carlo Glauber model

Reference 57

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source=pdf_text observed=2026-08-12T06:01:04.721936Z digest=sha256:725204c3dd68e0dab89ad257f9451cc1037fe6f5afdde2605815ce96f3bec848

Observation 68316a57-c49b-4d7d-93ad-11314de6eddf · outbound

This paper cites Exploring New Small System Geometries in Heavy Ion Collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Exploring New Small System Geometries in Heavy Ion Collisions

Reference 58

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source=pdf_text observed=2026-08-12T06:01:04.726303Z digest=sha256:21d046f49adc557514da1c56f5259d06aa9124c6730b1777eed584e6c392d2a9

Observation a5719a36-bb52-446d-aa01-89d5d65fc5d3 · outbound

This paper cites TGlauberMC on HepForge.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics TGlauberMC on HepForge

Reference 59

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source=pdf_text observed=2026-08-12T06:01:04.731034Z digest=sha256:2aa00267be48dedca3fe32b26e31c4f7396ec38754ae7b2d5d18bf57612b644d

Observation 73bba78e-3589-4a4e-9621-c00678d13085 · outbound

This paper cites Glauber Monte Carlo predictions for ultra-relativistic collisions with ${}^{16}{\rm O}$.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Glauber Monte Carlo predictions for ultra-relativistic collisions with ${}^{16}{\rm O}$

Reference 60

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source=pdf_text observed=2026-08-12T06:01:04.735589Z digest=sha256:a187e145f5ec3379a9ab953d94e4be5f7e654742ad120c64943ebfd5396a6364

Observation a0e6b9a6-36fd-4df7-b68d-fa3491cfd850 · outbound

This paper cites Hydrodynamic attractors, initial state energy and particle production in relativistic nuclear collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Hydrodynamic attractors, initial state energy and particle production in relativistic nuclear collisions

Reference 61

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source=pdf_text observed=2026-08-12T06:01:04.739990Z digest=sha256:5b12b615b26f49b7d624ab29d900d9c412b35b7e3e19487979fef3055b5e55e7

Observation 689d61f0-a7b3-4f51-84a1-f4aebbe4575a · outbound

This paper cites Flow Study in Relativistic Nuclear Collisions by Fourier Expansion of Azimuthal Particle Distributions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Flow Study in Relativistic Nuclear Collisions by Fourier Expansion of Azimuthal Particle Distributions

Reference 62

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source=pdf_text observed=2026-08-12T06:01:04.743985Z digest=sha256:d9cb30e9240925d37b86c671b91407fcef4af58fb507f1eea41e799734dd1d11

Observation 66a358c2-04af-402b-9a92-45eb462e5c0f · outbound

This paper cites New method for measuring azimuthal distributions in nucleus-nucleus collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics New method for measuring azimuthal distributions in nucleus-nucleus collisions

Reference 63

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source=pdf_text observed=2026-08-12T06:01:04.747923Z digest=sha256:83508bbfdee14de9251d78c9acccf52dac447a4e8571f875e2448241b9c00432

Observation b09e675e-85fb-4286-aacf-3b738ac8220a · outbound

This paper cites Flow analysis from multiparticle azimuthal correlations.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Flow analysis from multiparticle azimuthal correlations

Reference 64

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source=pdf_text observed=2026-08-12T06:01:04.751751Z digest=sha256:c3eab3ada0d9739f07e0ab7fbc89769acb3be280303fa1b21136f36a23d2c71a

Observation fea4ad9f-047e-48e4-aa52-d0c1cd38475b · outbound

This paper cites Determining initial-state fluctuations from flow measurements in heavy-ion collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Determining initial-state fluctuations from flow measurements in heavy-ion collisions

Reference 65

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source=pdf_text observed=2026-08-12T06:01:04.756566Z digest=sha256:0126ca23a124579a1dcd944d26757c501623eca4a1c243a00975c8562e726ec3

Observation 01c90895-cf3c-43b1-a6d3-3c086dd9c74f · outbound

This paper cites Skewness of elliptic flow fluctuations.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Skewness of elliptic flow fluctuations

Reference 66

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source=pdf_text observed=2026-08-12T06:01:04.760775Z digest=sha256:6e472716e5b0c941f4a829bcdab28cba14750078095f77f8ba65b284730ba6bd

Observation 31af662d-15e3-4b4d-bb0c-050ba400d986 · outbound

This paper cites Measurement of flow harmonics with multi-particle cumulants in Pb+Pb collisions at $\sqrt{s_{NN}}=2.76$ TeV with the ATLAS detector.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Measurement of flow harmonics with multi-particle cumulants in Pb+Pb collisions at $\sqrt{s_{NN}}=2.76$ TeV with the ATLAS detector

Reference 67

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source=pdf_text observed=2026-08-12T06:01:04.764696Z digest=sha256:911c2b4f70c50ee3e9da52eb0ce9b976710e5c5ac64b23d8ead4c99210ec7f6d

Observation ea785ef4-a9eb-4997-9e36-5d806a08d484 · outbound

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

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Linear and cubic response to the initial eccentricity in heavy-ion collisions

Reference 68

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source=pdf_text observed=2026-08-12T06:01:04.768368Z digest=sha256:a89593a2d7ef623e5e673585de7838622db8b02904ea4bc9f5d655c07654ac90

Observation b553cd5b-6fb4-481b-9424-23d900c21b07 · outbound

This paper cites an unresolved cited work.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Unresolved cited work

Reference 69

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source=pdf_text observed=2026-08-12T06:01:04.772369Z digest=sha256:d63692545509d2695f27c4654c0345238327ef38ffa9438a43e5871d95309489

Observation 2b7c6900-159d-40d5-97a4-ece35177b78e · outbound

This paper cites An effective chiral Hadron-Quark Equation of State.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics An effective chiral Hadron-Quark Equation of State

Reference 70

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source=pdf_text observed=2026-08-12T06:01:04.777057Z digest=sha256:180605320b5d0359ba9836c321e642269137b8d155bea7b80a4701d24ef1aa41

Observation 81787d55-424f-4209-be96-9f5e060b674e · outbound

This paper cites Causality violations in simulations of large and small heavy-ion collisions.

Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics Causality violations in simulations of large and small heavy-ion collisions

Reference 71

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source=pdf_text observed=2026-08-12T06:01:04.781735Z digest=sha256:dc8329eb89141c7d471ffe3a34a9a6eb74ed22fb60d03773bae33f1f6302a09f

Pith citing papers

Observation a425d0ae-2f62-4ed8-a853-71133c8d6831 · inbound

Collective dynamics in heavy and light-ion collisions -- II) Determining the origin of collective behavior in high-energy collisions cites this paper.

Collective dynamics in heavy and light-ion collisions -- II) Determining the origin of collective behavior in high-energy collisions Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics

Reference 7

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source=pdf_text observed=2026-08-12T06:01:11.220389Z digest=sha256:f16235ce5e9abedda5a8b716e21af2822ad3cb10141aad0d8753c343d0c82121

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Extended applicability domain of viscous anisotropic hydrodynamics in (2+1)-D Bjorken flow with transverse expansion cites this paper.

Extended applicability domain of viscous anisotropic hydrodynamics in (2+1)-D Bjorken flow with transverse expansion Collective dynamics in heavy and light-ion collisions -- I) Kinetic Theory vs. Hydrodynamics

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