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Paper Citation Record · LEDGER

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV

As of 14 August 2026, this Paper Citation Record lists 80 of 80 outbound references and 0 inbound Pith citation observations for arXiv:2501.02794.

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pith.paper-citation-record.v1
2501.02794 v1

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Outbound references

Observation 3b7f6d41-ba50-4710-885d-54b5d1424e0e · outbound

This paper cites Anisotropic transverse flow and the quark-hadron phase transition.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Anisotropic transverse flow and the quark-hadron phase transition

Reference 1

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This paper cites Flow at the SPS and RHIC as a Quark Gluon Plasma Signature.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Flow at the SPS and RHIC as a Quark Gluon Plasma Signature

Reference 2

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Observation de87a7dd-c5af-4fad-953b-86e66647509b · outbound

This paper cites A flow paradigm in heavy-ion collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV A flow paradigm in heavy-ion collisions

Reference 3

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Observation b9d7433c-447d-46ce-9332-87237ba4c1a5 · outbound

This paper cites Recent development of hydrodynamic modeling in heavy-ion collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Recent development of hydrodynamic modeling in heavy-ion collisions

Reference 4

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Observation 92ab20ea-e134-4ad3-bd4e-fa888afbdd2e · outbound

This paper cites Collective flow and hydrodynamics in large and small systems at the LHC.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Collective flow and hydrodynamics in large and small systems at the LHC

Reference 5

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Observation dccfa7f5-aafe-455d-93ac-1ac89593da3e · outbound

This paper cites Lan and S.-S.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Lan and S.-S

Reference 6

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This paper cites Dynamical exploring the QCD matter at finite temperatures and densities-a short review.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Dynamical exploring the QCD matter at finite temperatures and densities-a short review

Reference 7

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Observation 66fd5218-4e4a-4706-8dd3-0769f23fc37f · outbound

This paper cites Properties of the QCD Matter: A Review of Selected Results from the ALICE Experiment.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Properties of the QCD Matter: A Review of Selected Results from the ALICE Experiment

Reference 8

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Observation d9071e0c-0365-48d2-a9bc-b42e17d10e77 · outbound

This paper cites Estimate of the magnetic field strength in heavy-ion collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Estimate of the magnetic field strength in heavy-ion collisions

Reference 9

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This paper cites Event-by-event fluctuations of magnetic and electric fields in heavy ion collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Event-by-event fluctuations of magnetic and electric fields in heavy ion collisions

Reference 10

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This paper cites Event-by-event generation of electromagnetic fields in heavy-ion collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Event-by-event generation of electromagnetic fields in heavy-ion collisions

Reference 11

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Observation ba7ac5ed-ba05-40de-bfa0-f1084d1a4eef · outbound

This paper cites Electromagnetic fields in small systems from a multiphase transport model.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Electromagnetic fields in small systems from a multiphase transport model

Reference 12

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Novel mechanism for electric quadrupole moment generation in relativistic heavy-ion collisions

Reference 13

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Electromagnetic fields from the extended Kharzeev-McLerran-Warringa model in relativistic heavy-ion collisions

Reference 14

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This paper cites A systematical study of the chiral magnetic effects at the RHIC and LHC energies.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV A systematical study of the chiral magnetic effects at the RHIC and LHC energies

Reference 15

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Electromagnetic fields in ultra-peripheral relativistic heavy-ion collisions

Reference 16

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This paper cites Parity violation in hot QCD: why it can happen, and how to look for it.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Parity violation in hot QCD: why it can happen, and how to look for it

Reference 17

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This paper cites The effects of topological charge change in heavy ion collisions: "Event by event P and CP violation".

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV The effects of topological charge change in heavy ion collisions: "Event by event P and CP violation"

Reference 18

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Parity violation in hot QCD: how to detect it

Reference 20

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Azimuthal Charged-Particle Correlations and Possible Local Strong Parity Violation

Reference 21

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This paper cites Observation of charge-dependent azimuthal correlations and possible local strong parity violation in heavy ion collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Observation of charge-dependent azimuthal correlations and possible local strong parity violation in heavy ion collisions

Reference 22

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Fluctuations of charge separation perpendicular to the event plane and local parity violation in sqrt(sNN)=200 GeV Au+Au collisions at RHIC

Reference 23

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Beam-energy dependence of charge separation along the magnetic field in Au+Au collisions at RHIC

Reference 24

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This paper cites Charge separation relative to the reaction plane in Pb-Pb collisions at $\sqrt{s_{\rm NN}}= 2.76$ TeV.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Charge separation relative to the reaction plane in Pb-Pb collisions at $\sqrt{s_{\rm NN}}= 2.76$ TeV

Reference 25

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Azimuthal correlations from transverse momentum conservation and possible local parity violation

Reference 26

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV On the Charge Separation Effect in Relativistic Heavy Ion Collisions

Reference 27

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Charge conservation in RHIC and contributiuons to local parity violation observables

Reference 28

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Effects of Cluster Particle Correlations on Local Parity Violation Observables

Reference 29

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Global constraint on the magnitude of anomalous chiral effects in heavy-ion collisions

Reference 30

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Measurement of Charge Multiplicity Asymmetry Correlations in High Energy Nucleus-Nucleus Collisions at 200 GeV

Reference 31

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Wang and J

Reference 32

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Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Search for CME in U+U and Au+Au collisions in STAR with different approaches of handling backgrounds

Reference 33

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This paper cites Experimental searches for the chiral magnetic effect in heavy-ion collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Experimental searches for the chiral magnetic effect in heavy-ion collisions

Reference 34

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source=pdf_text observed=2026-08-10T22:10:58.124785Z digest=sha256:45f70e62b95412e1f7456cfa12cacd5f51f9d02b9e03ec6b99b0e66b12a991eb

Observation b5c8aea4-5f1f-43e7-bd3d-3b85c82a7612 · outbound

This paper cites CME -- Experimental Results and Interpretation.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV CME -- Experimental Results and Interpretation

Reference 35

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verified exact
local_arxiv, observed 2026-08-10T22:10:59.180549Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-14T06:32:32.682623+00:00.

source=pdf_text observed=2026-08-10T22:10:58.128930Z digest=sha256:eeffa5ca1da2e5dfe6e843e27ba7009efc4752c5e614028a8c6e31e38db2e20c

Observation eb94d4c7-c95a-4ff5-8a20-bd6d0ff059ac · outbound

This paper cites Chiral Magnetic Effects in Nuclear Collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Chiral Magnetic Effects in Nuclear Collisions

Reference 36

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source=pdf_text observed=2026-08-10T22:10:58.133093Z digest=sha256:8ae0a34460f111a2037fb48e1116c11c876f5cf5773fe578613e01f9356c8a7f

Observation 2a512c31-b24e-4347-8123-f8a607325ec0 · outbound

This paper cites Qi-Ye et al., Acta Phys.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Qi-Ye et al., Acta Phys

Reference 37

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raw_fallback, observed 2026-08-10T22:10:59.608407Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-10T22:10:58.136816Z digest=sha256:0a86e5c446a8669061fdac78600eff14e1ee720d203b37ae44b70d166c2cc4a2

Observation cb803cb0-c2e1-481a-b20d-40ed3987c394 · outbound

This paper cites Event Shape Selection Method in Search of the Chiral Magnetic Effect in Heavy-ion Collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Event Shape Selection Method in Search of the Chiral Magnetic Effect in Heavy-ion Collisions

Reference 38

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source=pdf_text observed=2026-08-10T22:10:58.140302Z digest=sha256:a3845a33fcd42a4932de65eab4a6e9775a183c6925bb43b3bd939804e36a01a5

Observation 67db2d59-4c7b-475c-af7c-8a43331a252c · outbound

This paper cites Detecting Chiral Magnetic Effect via Deep Learning.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Detecting Chiral Magnetic Effect via Deep Learning

Reference 39

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verified exact
local_arxiv, observed 2026-08-10T22:10:59.139290Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-10T22:10:58.144792Z digest=sha256:28514810ffbd4b1828d9537a3b4fe80131e42e735674b278b44c6a3c7e537931

Observation c9f7d4d9-5bb7-4eaf-b63d-233b4e0848d3 · outbound

This paper cites Testing the Chiral Magnetic Effect with Central U+U collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Testing the Chiral Magnetic Effect with Central U+U collisions

Reference 40

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source=pdf_text observed=2026-08-10T22:10:58.148542Z digest=sha256:2b00f921028baf2e2676eafbffe8b57076948848307a52df41f8c052cc12e5b0

Observation e95756f2-50e8-46c6-b732-efb36f620871 · outbound

This paper cites Test the chiral magnetic effect with isobaric collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Test the chiral magnetic effect with isobaric collisions

Reference 41

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source=pdf_text observed=2026-08-10T22:10:58.152161Z digest=sha256:512e522d7aed2b199c082b1be9da64dab2e52a6516b3ae9abf3e8211769661f6

Observation 3aa00c28-2a7a-48cc-9c42-7e8e5e4de585 · outbound

This paper cites an unresolved cited work.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Unresolved cited work

Reference 42

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source=pdf_text observed=2026-08-10T22:10:58.155894Z digest=sha256:b7aff89596893331d34213262ef79ffe58bbe8a9c12cc93616847506fd57a229

Observation b60c1838-f257-4e68-955d-dfc5461270e5 · outbound

This paper cites an unresolved cited work.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Unresolved cited work

Reference 43

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source=pdf_text observed=2026-08-10T22:10:58.159174Z digest=sha256:79e699a7c2131e6e361aa60770c853f19c90bcf6b7196734f8c350e1dbd790e7

Observation 08716d81-bee4-4b78-854f-cd198540b252 · outbound

This paper cites Properties of the QCD Matter -- An Experimental Review of Selected Results from RHIC BES Program.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Properties of the QCD Matter -- An Experimental Review of Selected Results from RHIC BES Program

Reference 44

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source=pdf_text observed=2026-08-10T22:10:58.162230Z digest=sha256:decf01353c93edec6bc254ae0f9d8d5ce8c6849b228b7e4e6f5a04c55daf711c

Observation f02588fc-6dce-436c-a307-502d072b6fb7 · outbound

This paper cites Determine the neutron skin type by relativistic isobaric collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Determine the neutron skin type by relativistic isobaric collisions

Reference 45

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source=pdf_text observed=2026-08-10T22:10:58.165276Z digest=sha256:0b96615792dc2c3177f0d2570fc0deccfce3d7491a76e711b75761c66f51ea35

Observation bae8fb6d-1a09-499a-b44b-ea9e25263569 · outbound

This paper cites Probing nuclear structure with mean transverse momentum in relativistic isobar collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Probing nuclear structure with mean transverse momentum in relativistic isobar collisions

Reference 46

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source=pdf_text observed=2026-08-10T22:10:58.168555Z digest=sha256:5d1ba2c3509f109e25ad339ed855dd2c5db80b0cab91f00574b64bd061ac39dc

Observation f7e92aff-edb8-42cf-ba5f-b6b604f1b53a · outbound

This paper cites Evidence of quadrupole and octupole deformations in $^{96}$Zr+$^{96}$Zr and $^{96}$Ru+$^{96}$Ru collisions at ultra-relativistic energies.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Evidence of quadrupole and octupole deformations in $^{96}$Zr+$^{96}$Zr and $^{96}$Ru+$^{96}$Ru collisions at ultra-relativistic energies

Reference 47

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source=pdf_text observed=2026-08-10T22:10:58.172009Z digest=sha256:c8c704883fe29f863efb27a5f9d53e4ecc24b52f717c39a15692c75f1a2bddf9

Observation 831990b7-1700-4aa7-adc0-476b256a48e8 · outbound

This paper cites Scaling approach to nuclear structure in high-energy heavy-ion collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Scaling approach to nuclear structure in high-energy heavy-ion collisions

Reference 48

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source=pdf_text observed=2026-08-10T22:10:58.175387Z digest=sha256:99edf0de05e8ddbda4a9ea491c855398123ef48e03611e2d7ae6fb8840e7de19

Observation 560b4867-89bd-4880-955b-f994f20e9264 · outbound

This paper cites The impact of nuclear deformation on relativistic heavy-ion collisions: assessing consistency in nuclear physics across energy scales.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV The impact of nuclear deformation on relativistic heavy-ion collisions: assessing consistency in nuclear physics across energy scales

Reference 49

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source=pdf_text observed=2026-08-10T22:10:58.179431Z digest=sha256:d4cb2d6e59b9112930a1ef39f4993c8d0fffaf6b4094cefd3e2602e5c403d719

Observation 3da40398-56db-4246-8b92-5d08b63deda1 · outbound

This paper cites Shape of atomic nuclei in heavy ion collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Shape of atomic nuclei in heavy ion collisions

Reference 50

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source=pdf_text observed=2026-08-10T22:10:58.183052Z digest=sha256:17916b74350ed222afb0c7232e418df2c8b66d03b16cc8574d8fa99bbad7eba4

Observation 085e601f-b343-48bd-baa2-c5f05974ebaa · outbound

This paper cites Probing triaxial deformation of atomic nuclei in high-energy heavy ion collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Probing triaxial deformation of atomic nuclei in high-energy heavy ion collisions

Reference 51

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source=pdf_text observed=2026-08-10T22:10:58.187330Z digest=sha256:b3c61069b1b3b3a1055903a650851995e2906c8814eadf2cc1b66a0b3910f4fa

Observation 0d49d97f-24a6-4dc3-bd2a-28dcd1b30b28 · outbound

This paper cites Search for the chiral magnetic effect in collisions between two isobars with deformed and neutron-rich nuclear structures.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Search for the chiral magnetic effect in collisions between two isobars with deformed and neutron-rich nuclear structures

Reference 52

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source=pdf_text observed=2026-08-10T22:10:58.191453Z digest=sha256:8adc728c0c2e8a52c2bbbf3c1667892075f2c4e1eec86b1f99acce1ce1c125cd

Observation b24dd6da-f889-4078-a7ae-3002c0b6e532 · outbound

This paper cites Impact of nuclear structure on the CME background in $^{96}_{44}$Ru + $^{96}_{44}$Ru and $^{96}_{40}$Zr + $^{96}_{40}$Zr collisions at $\sqrt{s_{NN}}$ = 7.7 $\sim$ 200 GeV from a multiphase transport model.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Impact of nuclear structure on the CME background in $^{96}_{44}$Ru + $^{96}_{44}$Ru and $^{96}_{40}$Zr + $^{96}_{40}$Zr collisions at $\sqrt{s_{NN}}$ = 7.7 $\sim$ 200 GeV from a multiphase transport model

Reference 53

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verified exact
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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-14T06:32:32.682623+00:00.

source=pdf_text observed=2026-08-10T22:10:58.195276Z digest=sha256:1a8f30931c0224b753cda81f5d41b0d3882dae21620bc60b8edf95043b035317

Observation 92c241b1-7452-4867-bc89-b28f90665600 · outbound

This paper cites Imaging the initial condition of heavy-ion collisions and nuclear structure across the nuclide chart.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Imaging the initial condition of heavy-ion collisions and nuclear structure across the nuclide chart

Reference 54

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source=pdf_text observed=2026-08-10T22:10:58.199095Z digest=sha256:5384dfa3bb2bb5b8c46b2ea148d0e3e4bcd9ce0d6e9769d84df5ad1570e4e16a

Observation 5cb139e1-5f28-41f9-950f-ea66c8bbcca5 · outbound

This paper cites Impact of initial fluctuations and nuclear deformations in isobar collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Impact of initial fluctuations and nuclear deformations in isobar collisions

Reference 55

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source=pdf_text observed=2026-08-10T22:10:58.203179Z digest=sha256:a65edc6b84ac202c7565af74dc3277b3c77f680bd570fe3ce11078757e97aa44

Observation 7667cf22-f3be-423c-95b6-ab9f57d57880 · outbound

This paper cites Evolution of topological charge through chiral anomaly transport.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Evolution of topological charge through chiral anomaly transport

Reference 56

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source=pdf_text observed=2026-08-10T22:10:58.207092Z digest=sha256:29558b7818cca05981ae0c98f64bb2ebb09969fed666b206f74b97261845ae72

Observation a767fac6-8d4a-40a3-81a3-8c79375e2a61 · outbound

This paper cites Exploring the chiral magnetic effect in isobar collisions through Chiral Anomaly Transport.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Exploring the chiral magnetic effect in isobar collisions through Chiral Anomaly Transport

Reference 57

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source=pdf_text observed=2026-08-10T22:10:58.210744Z digest=sha256:106779a936ce7b43963b04ed0bf7369da4c02c06993ff622827d66a988bd4be9

Observation 4b81da0a-3811-497c-9211-c321942b6df4 · outbound

This paper cites Varying the chiral magnetic effect relative to flow in a single nucleus-nucleus collision.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Varying the chiral magnetic effect relative to flow in a single nucleus-nucleus collision

Reference 58

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source=pdf_text observed=2026-08-10T22:10:58.214574Z digest=sha256:d3a58bcf1e442e999e9be6ebd2b3569070529b0ea8043dd9c4c14314b1ad2215

Observation af073c85-1ab4-4909-a5a4-f1749f00954c · outbound

This paper cites Importance of isobar density distributions on the chiral magnetic effect search.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Importance of isobar density distributions on the chiral magnetic effect search

Reference 59

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source=pdf_text observed=2026-08-10T22:10:58.218477Z digest=sha256:0385bdbf761ff4a8bb139f451a50b69cc6f1b3a5cb7474dd16a45a5aeaf2f5de

Observation 678f265c-41ee-4805-80ab-e6d4c723e2eb · outbound

This paper cites Impact of magnetic-field fluctuations on measurements of the chiral magnetic effect in collisions of isobaric nuclei.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Impact of magnetic-field fluctuations on measurements of the chiral magnetic effect in collisions of isobaric nuclei

Reference 60

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source=pdf_text observed=2026-08-10T22:10:58.222746Z digest=sha256:6e1abc9beae42a1f33134e3455d2bd34aa035e6a72139161c80e90a57fc5595c

Observation 146bbab7-275f-4d98-b217-76d038b60edf · outbound

This paper cites an unresolved cited work.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Unresolved cited work

Reference 61

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source=pdf_text observed=2026-08-10T22:10:58.226495Z digest=sha256:255a6ea5a4d0981a1b310fe40b79b6caed5bfc5b15bc9cf17f9ff8b7712ae70f

Observation 82a957f5-aa10-42cf-a1c5-a18096b1cdc8 · outbound

This paper cites Two- and three-particle nonflow contributions to the chiral magnetic effect measurement by spectator and participant planes in relativistic heavy ion collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Two- and three-particle nonflow contributions to the chiral magnetic effect measurement by spectator and participant planes in relativistic heavy ion collisions

Reference 62

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source=pdf_text observed=2026-08-10T22:10:58.230745Z digest=sha256:aff918369b9eb9c68bff7cf73f5db82757db7bf7916f98003e450098ce27f563

Observation 6c70ae1c-396e-4f18-be85-8e22cd123331 · outbound

This paper cites Anomalous Chiral Transport in Heavy Ion Collisions from Anomalous-Viscous Fluid Dynamics.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Anomalous Chiral Transport in Heavy Ion Collisions from Anomalous-Viscous Fluid Dynamics

Reference 63

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source=pdf_text observed=2026-08-10T22:10:58.234455Z digest=sha256:8e72c46e291273bb3845025aa00db2b42921408d73eb31c92cc747a506f8f951

Observation 75ac87da-e25f-4f32-a49c-32a6974c8994 · outbound

This paper cites Difference between signal and background of the chiral magnetic effect relative to spectator and participant planes in isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Difference between signal and background of the chiral magnetic effect relative to spectator and participant planes in isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV

Reference 64

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source=pdf_text observed=2026-08-10T22:10:58.237817Z digest=sha256:b50d831f4f7fa1b2a55e6f926fbce640e171b1e4a988c25940198db0f53f7bc6

Observation 47a992d1-459f-417b-9cc3-9e4dc7c82bf4 · outbound

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

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV A Multi-Phase Transport Model for Relativistic Heavy Ion Collisions

Reference 65

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source=pdf_text observed=2026-08-10T22:10:58.241708Z digest=sha256:21f0454667cf2bd30e08d5a9e27a092dc6ba4d0d69ca9973b0d943cdcfb99c78

Observation 55183332-7827-48de-adce-6a0b54c1b142 · outbound

This paper cites Predictions for $\sqrt {s_{NN}}=5.02$ TeV Pb+Pb Collisions from a Multi-Phase Transport Model.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Predictions for $\sqrt {s_{NN}}=5.02$ TeV Pb+Pb Collisions from a Multi-Phase Transport Model

Reference 66

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source=pdf_text observed=2026-08-10T22:10:58.244774Z digest=sha256:120282a363cee3c29269f52773486593aa90af217342eb8d456f6fa038b8530f

Observation b7f0b254-6849-4fec-b865-83a2fdf08414 · outbound

This paper cites Further developments of a multi-phase transport model for relativistic nuclear collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Further developments of a multi-phase transport model for relativistic nuclear collisions

Reference 67

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source=pdf_text observed=2026-08-10T22:10:58.248019Z digest=sha256:f67813f15732e24009cbe7cdfc3edc7e6b45ec68555b73f116b8a4da13fa0cd9

Observation 303c0bd6-210f-458a-868e-8f9b82b8f9e8 · outbound

This paper cites Evolution of transverse flow and effective temperatures in the parton phase from a multi-phase transport model.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Evolution of transverse flow and effective temperatures in the parton phase from a multi-phase transport model

Reference 68

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Unavailable: canonical work link unavailable.

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Observation 66a1b462-dbab-462f-9342-3856187f8160 · outbound

This paper cites Azimuthal Anisotropy Relative to the Participant Plane from AMPT in Central p+Au, d+Au, and $^{3}$He+Au Collisions at $\sqrt{s_{NN}}=200$ GeV.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Azimuthal Anisotropy Relative to the Participant Plane from AMPT in Central p+Au, d+Au, and $^{3}$He+Au Collisions at $\sqrt{s_{NN}}=200$ GeV

Reference 69

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verified exact
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Observation 9e37defa-2b67-41f0-9a84-7af382d2241f · outbound

This paper cites Ma and A.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Ma and A

Reference 70

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Observation 4869997d-6f41-4821-acac-9d899eadd5e3 · outbound

This paper cites Improved Quark Coalescence for a Multi-Phase Transport Model.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Improved Quark Coalescence for a Multi-Phase Transport Model

Reference 71

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Observation 308c49c7-9129-4143-923a-c9ac9264751a · outbound

This paper cites Study on higher moments of net-charge multiplicity distributions using a multiphase transport model.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Study on higher moments of net-charge multiplicity distributions using a multiphase transport model

Reference 72

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Observation 544a327d-79f6-4af2-b017-fa756983b5ea · outbound

This paper cites Dynamical development of proton cumulants and correlation functions in Au+Au collisions at $\sqrt{s_{NN}} = 7.7$ GeV from a multiphase transport model.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Dynamical development of proton cumulants and correlation functions in Au+Au collisions at $\sqrt{s_{NN}} = 7.7$ GeV from a multiphase transport model

Reference 73

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verified exact
local_arxiv, observed 2026-08-10T22:10:58.547688Z

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Observation fb0894e9-879b-4d4c-b2aa-86c825394212 · outbound

This paper cites Probing fluctuations and correlations of strangeness by net-kaon cumulants in Au+Au collisions at $\sqrt{s_{NN}} = 7.7$ GeV.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Probing fluctuations and correlations of strangeness by net-kaon cumulants in Au+Au collisions at $\sqrt{s_{NN}} = 7.7$ GeV

Reference 74

Resolution
verified exact
local_arxiv, observed 2026-08-10T22:10:58.531205Z

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Observation 0df2f3b2-0719-4305-a577-20f9716ddbc8 · outbound

This paper cites Effects of final state interactions on charge separation in relativistic heavy ion collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Effects of final state interactions on charge separation in relativistic heavy ion collisions

Reference 75

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Observation 5ae23630-d733-4383-860c-f5a200759901 · outbound

This paper cites Abdallah et al.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Abdallah et al

Reference 76

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Observation aaba7cd1-ab44-4150-af53-a78e18ab3055 · outbound

This paper cites Azimuthally fluctuating magnetic field and its impacts on observables in heavy-ion collisions.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Azimuthally fluctuating magnetic field and its impacts on observables in heavy-ion collisions

Reference 77

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Observation 99432ed7-9807-4b72-baa9-1036ce69d27b · outbound

This paper cites Signatures of Chiral Magnetic Effect in the Collisions of Isobars.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Signatures of Chiral Magnetic Effect in the Collisions of Isobars

Reference 78

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Observation 46caee35-66d9-4d12-85e4-39d142bddc58 · outbound

This paper cites Sensitivity analysis of the chiral magnetic effect observables using a multiphase transport model.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Sensitivity analysis of the chiral magnetic effect observables using a multiphase transport model

Reference 79

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local_arxiv, observed 2026-08-10T22:10:58.357165Z

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Observation cb585261-c270-43cf-8c3a-03c2866ec105 · outbound

This paper cites Quantum color screening in external magnetic field.

Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\sqrt{s_{_{\rm NN}}} = 200$ GeV Quantum color screening in external magnetic field

Reference 80

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