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Paper Citation Record · LEDGER

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model

As of 14 August 2026, this Paper Citation Record lists 100 of 113 outbound references and 0 inbound Pith citation observations for arXiv:2411.17117.

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2411.17117 v2

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measured 100 of 113 reference resolution

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Outbound references

Observation 76b95ed9-17eb-4e4c-9685-4187788038ac · outbound

This paper cites Experimental and Theoretical Challenges in the Search for the Quark Gluon Plasma: The STAR Collaboration's Critical Assessment of the Evidence from RHIC Collisions.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Experimental and Theoretical Challenges in the Search for the Quark Gluon Plasma: The STAR Collaboration's Critical Assessment of the Evidence from RHIC Collisions

Reference 1

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Observation a12acd04-a306-4d4e-9628-7edb35fadeb8 · outbound

This paper cites On the Strongly-Interacting Low-Viscosity Matter Created in Relativistic Nuclear Collisions.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model On the Strongly-Interacting Low-Viscosity Matter Created in Relativistic Nuclear Collisions

Reference 2

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Observation 7b2ddaa0-f13b-4fe0-a755-51b8912387aa · outbound

This paper cites Viscosity Information from Relativistic Nuclear Collisions: How Perfect is the Fluid Observed at RHIC?.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Viscosity Information from Relativistic Nuclear Collisions: How Perfect is the Fluid Observed at RHIC?

Reference 3

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Observation 27e092ae-fc26-4538-ab5b-4a35dfe54be2 · outbound

This paper cites Conformal Relativistic Viscous Hydrodynamics: Applications to RHIC results at sqrt(s_NN) = 200 GeV.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Conformal Relativistic Viscous Hydrodynamics: Applications to RHIC results at sqrt(s_NN) = 200 GeV

Reference 4

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This paper cites Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics

Reference 5

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Unresolved cited work

Reference 6

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Unresolved cited work

Reference 7

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This paper cites ’t Hooft, Phys.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model ’t Hooft, Phys

Reference 8

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model ’t Hooft, Phys

Reference 9

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Unresolved cited work

Reference 10

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Unresolved cited work

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Unresolved cited work

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Unresolved cited work

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Particle production in strong electromagnetic fields in relativistic heavy-ion collisions

Reference 14

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Magnetohydrodynamics, charged currents and directed flow in heavy ion collisions

Reference 15

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Comments About the Electromagnetic Field in Heavy-Ion Collisions

Reference 16

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Nonlinear electromagnetic response in quark-gluon plasma

Reference 17

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Hydrodynamics of charge fluctuations and balance functions

Reference 18

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Estimation of electric conductivity of the quark gluon plasma via asymmetric heavy-ion collisions

Reference 19

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Event-by-event generation of electromagnetic fields in heavy-ion collisions

Reference 20

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Electrical conductivity of the quark-gluon plasma and soft photon spectrum in heavy-ion collisions

Reference 21

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Chiral Magnetic and Vortical Effects in High-Energy Nuclear Collisions --- A Status Report

Reference 22

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This paper cites Determining the Diffusivity for Light Quarks from Experiment.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Determining the Diffusivity for Light Quarks from Experiment

Reference 23

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Ward identity and electrical conductivity in hot QED

Reference 24

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Leading Order Calculation of Electric Conductivity in Hot Quantum Electrodynamics from Diagrammatic Methods

Reference 25

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Transport coefficients in high temperature gauge theories: (I) Leading-log results

Reference 26

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Transport coefficients in high temperature gauge theories: (II) Beyond leading log

Reference 27

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Electrical Conductivity of Hot QCD Matter

Reference 28

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Transport coefficients from the Nambu-Jona-Lasinio model for $SU(3)_f$

Reference 29

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Thermal Relaxation, Electrical Conductivity and Charge Diffusion in a Hot QCD Medium

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model From AdS/CFT correspondence to hydrodynamics

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Finite Temperature Spectral Densities of Momentum and R-Charge Correlators in $\N=4$ Yang Mills Theory

Reference 32

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model The electrical conductivity and soft photon emissivity of the QCD plasma

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Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Spectral functions at small energies and the electrical conductivity in hot, quenched lattice QCD

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Observation fa57d3a8-01aa-49db-abc3-45b0484a976e · outbound

This paper cites Thermal dilepton rate and electrical conductivity: An analysis of vector current correlation functions in quenched lattice QCD.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Thermal dilepton rate and electrical conductivity: An analysis of vector current correlation functions in quenched lattice QCD

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Observation 5bcfd5d6-acf8-40d1-9fe0-a3fb0f5da903 · outbound

This paper cites On the temperature dependence of the electrical conductivity in hot quenched lattice QCD.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model On the temperature dependence of the electrical conductivity in hot quenched lattice QCD

Reference 36

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source=pdf_text observed=2026-08-12T12:37:10.039555Z digest=sha256:2623acc0ee8195521d739c09ab3510d325cf3d7f75b117aa9437492087c282e4

Observation 58ddbf4c-88f3-4b6f-b2b6-30fc2713ae72 · outbound

This paper cites Electrical conductivity of the quark-gluon plasma across the deconfinement transition.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Electrical conductivity of the quark-gluon plasma across the deconfinement transition

Reference 37

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source=pdf_text observed=2026-08-12T12:37:10.044316Z digest=sha256:34f2363e9953294c19d04c78640936094c1ca05cb96fcbfc43d337b63202b765

Observation f12ca92b-9615-45c7-9e77-7f89e3d1ef5a · outbound

This paper cites Electrical conductivity and charge diffusion in thermal QCD from the lattice.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Electrical conductivity and charge diffusion in thermal QCD from the lattice

Reference 38

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source=pdf_text observed=2026-08-12T12:37:10.049541Z digest=sha256:7a1b54ca8028da5ac8c40178685e7b6181073baae3606ea02790bd6f6fd7e680

Observation 2f169b97-ae6c-443f-959d-13c6b041cf52 · outbound

This paper cites Electrical conductivity of the quark-gluon plasma from the low energy limit of photon and dilepton spectra.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Electrical conductivity of the quark-gluon plasma from the low energy limit of photon and dilepton spectra

Reference 39

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source=pdf_text observed=2026-08-12T12:37:10.055582Z digest=sha256:439d23a276bc3e31827fecb9d98ba3084f40f6bbfa9cf99e281cd5e1cbef09e4

Observation fd490324-a353-4c56-b2df-3c8bb2690e47 · outbound

This paper cites Electric conductivity of hot and dense nuclear matter.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Electric conductivity of hot and dense nuclear matter

Reference 40

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source=pdf_text observed=2026-08-12T12:37:10.061165Z digest=sha256:7d8efc9e72505c86b063e5eae9ae7c0026f95f2877bd7976163815bd0de5fc9e

Observation 948444ee-30c1-43a1-a464-f251063b303b · outbound

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

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model The effects of topological charge change in heavy ion collisions: "Event by event P and CP violation"

Reference 41

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source=pdf_text observed=2026-08-12T12:37:10.065843Z digest=sha256:6c523daabac6467e4810bbe8d2cb924026242469ca632c7dedcb509e03d05884

Observation 6d53df03-598c-4ce5-acb3-4c2bc56cabfd · outbound

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

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Estimate of the magnetic field strength in heavy-ion collisions

Reference 42

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source=pdf_text observed=2026-08-12T12:37:10.070521Z digest=sha256:79bf2ee5a5be4076144fcd07e58d6a0ec928fa8580942dbadbcd55b8de652e9a

Observation ac043501-7c4d-4da5-8c7b-bcb3a47665d4 · outbound

This paper cites Abdallah et al.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Abdallah et al

Reference 43

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source=pdf_text observed=2026-08-12T12:37:10.075196Z digest=sha256:1545d56db76f4a8da0d9f641dedc56f36787509cf30b84e16514608df20bae1e

Observation bec96b4e-acb9-42a1-a4ab-c915f1425a8f · outbound

This paper cites The BEST framework for the search for the QCD critical point and the chiral magnetic effect.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model The BEST framework for the search for the QCD critical point and the chiral magnetic effect

Reference 44

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source=pdf_text observed=2026-08-12T12:37:10.079905Z digest=sha256:fa583340cf946507bafa4fbef469a583bd79e95b7f45cd4b7676f71346fbaeb1

Observation dcc9154b-9a8a-4939-a200-54e2657983dd · outbound

This paper cites Search for the chiral magnetic wave using anisotropic flow of identified particles at RHIC.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Search for the chiral magnetic wave using anisotropic flow of identified particles at RHIC

Reference 45

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local_arxiv, observed 2026-08-12T12:37:11.621331Z

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source=pdf_text observed=2026-08-12T12:37:10.084527Z digest=sha256:0fa18f5a2c38ce2be297658c0030daf2da36b1d55e0890986126936ffa3c1aa1

Observation 0e8f10db-d3e7-4e0d-a573-784a6f8aa43b · outbound

This paper cites Vilenkin, Phys.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Vilenkin, Phys

Reference 46

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source=pdf_text observed=2026-08-12T12:37:10.089207Z digest=sha256:80361085512c51078c3f19cfcdef2ebb3f2f58811e608029a4678ac6b10fb667

Observation 590ac02f-fa27-41fd-a2ab-c8b2c7368554 · outbound

This paper cites Vilenkin, Phys.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Vilenkin, Phys

Reference 47

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source=pdf_text observed=2026-08-12T12:37:10.093710Z digest=sha256:e0df1ab08641183a1f3a192080539b67abe134685f795ab3bebf8c6863f84fee

Reference 48

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source=pdf_text observed=2026-08-12T12:37:10.098069Z digest=sha256:b4c177cd107969a1e67e30e94bd0abb7192f8506a716e1a576c1ccd45ea44ee8

Observation c79744cd-b615-45ce-a6a1-3ee6d1765d92 · outbound

This paper cites Hydrodynamics with Triangle Anomalies.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Hydrodynamics with Triangle Anomalies

Reference 49

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source=pdf_text observed=2026-08-12T12:37:10.102678Z digest=sha256:87c127d232c3a9e31f3a0fddcc41259278303d02ff065648a74b60ccf7394df1

Reference 50

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source=pdf_text observed=2026-08-12T12:37:10.107135Z digest=sha256:4be1a02f2ee04c15e9f40ffe5f06793fc3d89549789e2373821125393531ac13

Observation 8016f111-c591-48f4-8592-68339e373452 · outbound

This paper cites Damping rate of a fermion in ultradegenerate chiral matter.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Damping rate of a fermion in ultradegenerate chiral matter

Reference 51

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source=pdf_text observed=2026-08-12T12:37:10.111486Z digest=sha256:eb737604e78cdce6a5b07ad9d94b8be5387f49701b7015c0737166dfb5eb26cc

Observation d50af49e-2c14-4b6b-a9cc-e503246cfbb0 · outbound

This paper cites Measuring chiral imbalance with collisional energy loss.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Measuring chiral imbalance with collisional energy loss

Reference 52

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source=pdf_text observed=2026-08-12T12:37:10.116131Z digest=sha256:48831433047e740ba16bea8316c8db375683336bc712ad76c941fe65823ce540

Observation bc5dee70-5987-4a2b-9f90-72631ff4cc60 · outbound

This paper cites Inhomogeneous chiral condensates in three-flavor quark matter.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Inhomogeneous chiral condensates in three-flavor quark matter

Reference 53

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source=pdf_text observed=2026-08-12T12:37:10.120567Z digest=sha256:8dc5db46417f8f3e566997166d95862ae96ae5c732061afcf7bba07c49f4b64b

Observation bf7af805-7514-4379-b78b-b400cb42ad6e · outbound

This paper cites Quark Matter in a Parallel Electric and Magnetic Field Background: Chiral Phase Transition and Equilibration of Chiral Density.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Quark Matter in a Parallel Electric and Magnetic Field Background: Chiral Phase Transition and Equilibration of Chiral Density

Reference 54

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local_arxiv, observed 2026-08-12T12:37:11.510782Z

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source=pdf_text observed=2026-08-12T12:37:10.125353Z digest=sha256:f94c99899e7beda03addf7e8c0887108cb87cfee824e9e6dbb069ec0eceff984

Observation 45e62420-b77a-4a60-bd74-debc03abcfe8 · outbound

This paper cites Chiral Relaxation Time at the Crossover of Quantum Chromodynamics.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Chiral Relaxation Time at the Crossover of Quantum Chromodynamics

Reference 55

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local_arxiv, observed 2026-08-12T12:37:11.490555Z

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source=pdf_text observed=2026-08-12T12:37:10.130306Z digest=sha256:7dd7b35b4a873820d171d80305492c37df1a8f62ff598ef06e32d87a7253e985

Observation ea191609-ce96-490b-b08c-b2baaa2013f6 · outbound

This paper cites Topological susceptibility, divergent chiral density and phase diagram of chirally imbalanced QCD medium at finite temperature.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Topological susceptibility, divergent chiral density and phase diagram of chirally imbalanced QCD medium at finite temperature

Reference 56

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source=pdf_text observed=2026-08-12T12:37:10.134950Z digest=sha256:894cd058d5c83e1c1f0bec2e1fffd415d575a15beae8a81c041cf61c04aac697

Observation 5d7c0189-e43a-4d09-88f8-fca166c2b1b5 · outbound

This paper cites Insignificance of the anomalous magnetic moment of the quarks in presence of chiral imbalance.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Insignificance of the anomalous magnetic moment of the quarks in presence of chiral imbalance

Reference 57

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source=pdf_text observed=2026-08-12T12:37:10.139598Z digest=sha256:4a06a2fc9d4b2fee3a91db4a6d50c3383d452e727cc39f7a26cbdf2e90e63012

Observation a53963ce-2f06-43ed-98d8-c81822026b70 · outbound

This paper cites Chiral magnetic effect in the PNJL model.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Chiral magnetic effect in the PNJL model

Reference 58

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source=pdf_text observed=2026-08-12T12:37:10.144220Z digest=sha256:9e060e26b42ff26b461498c744f46d0477e499520930590cf3d589335cb90114

Observation 03eb425a-fbbf-4c3d-9491-01f491af28e4 · outbound

This paper cites Chemical potentials and parity breaking: the Nambu-Jona-Lasinio model.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Chemical potentials and parity breaking: the Nambu-Jona-Lasinio model

Reference 59

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local_arxiv, observed 2026-08-12T12:37:11.425376Z

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source=pdf_text observed=2026-08-12T12:37:10.149112Z digest=sha256:3aca29f58b9c3c2f98829b413991b69febd6bdac3d0d83f5c6a9a5dd4e15c80c

Observation c7a1448d-924e-4ac7-9226-f1546922f0aa · outbound

This paper cites Catalysis of Dynamical Chiral Symmetry Breaking by Chiral Chemical Potential.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Catalysis of Dynamical Chiral Symmetry Breaking by Chiral Chemical Potential

Reference 60

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local_arxiv, observed 2026-08-12T12:37:11.404337Z

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source=pdf_text observed=2026-08-12T12:37:10.153902Z digest=sha256:901104c4599453c80e4363936eb5c0aaf5c7b4b12f98ac8f432f8810d88f0959

Observation 7417e30e-d509-4e09-9a76-76dacf9f39b1 · outbound

This paper cites Deconfinement and chiral phase transitions in quark matter with chiral imbalance.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Deconfinement and chiral phase transitions in quark matter with chiral imbalance

Reference 61

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source=pdf_text observed=2026-08-12T12:37:10.158702Z digest=sha256:3fdaf42ccb482dcd9b53c8fd6d575a9d1a2aa1120f2ba33d35a3f808fb4846fc

Observation 6a300a3f-205f-4a7e-86b0-63c898448f63 · outbound

This paper cites Chiral perturbation theory for nonzero chiral imbalance.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Chiral perturbation theory for nonzero chiral imbalance

Reference 62

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local_arxiv, observed 2026-08-12T12:37:11.368827Z

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source=pdf_text observed=2026-08-12T12:37:10.163387Z digest=sha256:8e8a6875dcf2027811c0bbbc0d38c6aa45f20638a1d9c9e94ae95306fce39b25

Observation db16bc8d-e546-4864-81c7-3b7e8aa665cb · outbound

This paper cites Two-Color QCD with Non-zero Chiral Chemical Potential.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Two-Color QCD with Non-zero Chiral Chemical Potential

Reference 63

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source=pdf_text observed=2026-08-12T12:37:10.168917Z digest=sha256:9bbf6320e594a7748746503ea8a4834dffbbef1d96cfc69a013f9fa2ddfbc1b9

Observation 2fa7d2ed-22e4-4274-aaf8-ced98f552b28 · outbound

This paper cites Study of QCD Phase Diagram with Non-Zero Chiral Chemical Potential.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Study of QCD Phase Diagram with Non-Zero Chiral Chemical Potential

Reference 64

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source=pdf_text observed=2026-08-12T12:37:10.174083Z digest=sha256:d444e19b35d901d0877a0477b5e7197ac56ef196aa8f74885eb88e53a5fcbfe0

Observation 3138a227-80dd-4905-bbbc-8ace8f0953fa · outbound

This paper cites Electromagnetic spectral functions in hot and dense chirally imbalanced quark matter.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Electromagnetic spectral functions in hot and dense chirally imbalanced quark matter

Reference 65

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source=pdf_text observed=2026-08-12T12:37:10.178917Z digest=sha256:b1ce4e873a2827dbcfcbad64ec47bc850d0b882f3e5829f6e3730a45dfb457b2

Observation b2015f21-2ae7-4ec3-a1d4-44ba3e8f97b9 · outbound

This paper cites Dilepton production from chirally asymmetric matter.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Dilepton production from chirally asymmetric matter

Reference 66

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local_arxiv, observed 2026-08-12T12:37:11.302975Z

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source=pdf_text observed=2026-08-12T12:37:10.183517Z digest=sha256:c614524cc214bead6ab030f7969f2920f9ea6103e992a1633cbaa3a63c06d999

Observation 5eef6899-2bfb-4a93-a2c3-d59f6e6afb2b · outbound

This paper cites An effective QCD Lagrangian in the presence of an axial chemical potential.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model An effective QCD Lagrangian in the presence of an axial chemical potential

Reference 67

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local_arxiv, observed 2026-08-12T12:37:11.282039Z

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source=pdf_text observed=2026-08-12T12:37:10.188148Z digest=sha256:2bf5f34219bc5d2a045e3981edfccdf3548cd94a6a84599ae712cd2cea901e86

Observation 581687f2-56da-409a-8e56-449286e59879 · outbound

This paper cites Pion scattering, light resonances and chiral symmetry restoration at nonzero chiral imbalance and temperature.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Pion scattering, light resonances and chiral symmetry restoration at nonzero chiral imbalance and temperature

Reference 68

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local_arxiv, observed 2026-08-12T12:37:11.260193Z

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source=pdf_text observed=2026-08-12T12:37:10.192733Z digest=sha256:276d62b83eb863988c606ee916a8f2db62edfb833747a057104244abb920c278

Observation 09c749ff-72d4-4ad3-9e25-ff02707794cd · outbound

This paper cites The mass and spectral function of scalar and pseudoscalar mesons in a hot and chirally imbalanced medium using the two-flavor NJL model.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model The mass and spectral function of scalar and pseudoscalar mesons in a hot and chirally imbalanced medium using the two-flavor NJL model

Reference 69

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source=pdf_text observed=2026-08-12T12:37:10.197424Z digest=sha256:4a3886b7e0e0050d19ed0c7c12f7c6c3a41967fd1523d43cdfc9f9249033a1be

Observation a0a56458-c5c9-4573-97c1-06e94a6dbfbc · outbound

This paper cites Chiral anomalous processes in magnetospheres of pulsars and black holes.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Chiral anomalous processes in magnetospheres of pulsars and black holes

Reference 70

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local_arxiv, observed 2026-08-12T12:37:11.221613Z

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source=pdf_text observed=2026-08-12T12:37:10.202233Z digest=sha256:f34fe36f9c38f2b72b5da56218d16fd73f8452afa8be4f8c7f847c4c314548c8

Observation 82ffc31d-888c-4b77-9bc1-2309266682d1 · outbound

This paper cites Topological Currents in Neutron Stars: Kicks, Precession, Toroidal Fields, and Magnetic Helicity.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Topological Currents in Neutron Stars: Kicks, Precession, Toroidal Fields, and Magnetic Helicity

Reference 71

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Observation 4a6afaff-09d0-4027-acd3-1b15d1f39e6e · outbound

This paper cites Chiral transport of neutrinos in supernovae: Neutrino-induced fluid helicity and helical plasma instability.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Chiral transport of neutrinos in supernovae: Neutrino-induced fluid helicity and helical plasma instability

Reference 72

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Observation 9c7766ad-b4da-44c3-8e4c-e2fa8bef92f0 · outbound

This paper cites Anomalous plasma: chiral magnetic effect and all that.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Anomalous plasma: chiral magnetic effect and all that

Reference 73

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Observation 160b5e87-b373-4682-ac6f-675b7a0ddcc5 · outbound

This paper cites Observation of the chiral magnetic effect in ZrTe5.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Observation of the chiral magnetic effect in ZrTe5

Reference 74

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Observation e3d2182c-9412-41b4-8a5c-ee4d0de15770 · outbound

This paper cites The chiral critical line of N_f=2+1 QCD at zero and non-zero baryon density.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model The chiral critical line of N_f=2+1 QCD at zero and non-zero baryon density

Reference 75

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Observation 957eadee-c6d4-4f84-9216-e1f6278c91ac · outbound

This paper cites The QCD transition temperature: results with physical masses in the continuum limit.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model The QCD transition temperature: results with physical masses in the continuum limit

Reference 76

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Observation 832e4a44-6b17-4b42-b9a8-c231eea087b6 · outbound

This paper cites The QCD transition temperature: results with physical masses in the continuum limit II..

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model The QCD transition temperature: results with physical masses in the continuum limit II.

Reference 77

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Observation b13e3f75-5e51-4918-8413-56d0a0b20220 · outbound

This paper cites Equation of state and QCD transition at finite temperature.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Equation of state and QCD transition at finite temperature

Reference 78

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Observation 0d83245d-ba87-453d-9d3a-dc536e8ef61e · outbound

This paper cites The QCD Equation of State with almost Physical Quark Masses.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model The QCD Equation of State with almost Physical Quark Masses

Reference 79

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Observation 39188531-3320-4382-a7f3-bad566093955 · outbound

This paper cites Lattice QCD at Finite Density -- An introductory review.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Lattice QCD at Finite Density -- An introductory review

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Observation 8e321569-5e0e-4d43-b323-66a76616b90f · outbound

This paper cites Nambu and G.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Nambu and G

Reference 81

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Observation 6d8e4101-f563-4886-9629-eb33dc66f3d7 · outbound

This paper cites Nambu and G.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Nambu and G

Reference 82

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Observation 65d61e9a-2ac9-4055-97ad-baae39729ec5 · outbound

This paper cites an unresolved cited work.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Unresolved cited work

Reference 83

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Observation 075c4ffd-f0b1-4daa-be66-461592eb9ef1 · outbound

This paper cites Vogl and W.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Vogl and W

Reference 84

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Observation 10ae0e25-f2ff-4e3b-afa7-a9d1958fad32 · outbound

This paper cites NJL-model analysis of dense quark matter.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model NJL-model analysis of dense quark matter

Reference 85

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Observation 820a1140-1474-48a0-b8eb-6e882b93e370 · outbound

This paper cites Forty-fifth anniversary of the Nambu-Jona-Lasinio model.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Forty-fifth anniversary of the Nambu-Jona-Lasinio model

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Observation 185003b1-fbd7-44b5-ae3b-2fb6a8160bc6 · outbound

This paper cites Shear viscosity from Kubo formalism: NJL-model study.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Shear viscosity from Kubo formalism: NJL-model study

Reference 87

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Observation de750897-4a3d-43de-a72e-2c8f0aeb22bd · outbound

This paper cites Shear Viscosities from Kubo Formalism in a large-$N_{\rm c}$ Nambu--Jona-Lasinio Model.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Shear Viscosities from Kubo Formalism in a large-$N_{\rm c}$ Nambu--Jona-Lasinio Model

Reference 88

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Reference 89

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local_arxiv, observed 2026-08-12T12:37:10.970233Z

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Reference 90

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Observation 2d1b34d1-c511-432c-874c-153c32591904 · outbound

This paper cites Shear and Bulk Viscosities of Quark Matter from Quark-Meson Fluctuations in the Nambu--Jona-Lasinio model.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Shear and Bulk Viscosities of Quark Matter from Quark-Meson Fluctuations in the Nambu--Jona-Lasinio model

Reference 91

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Observation c9327a48-ebaf-411f-9976-eee331c8b512 · outbound

This paper cites Mallik and S.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Mallik and S

Reference 92

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Observation f2e20176-f9d0-4f41-839e-6c59f12c7778 · outbound

This paper cites Quack and S.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Quack and S

Reference 93

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source=pdf_text observed=2026-08-12T12:37:10.314846Z digest=sha256:10f976cfa8f6dca42f92bed1c2df8e359da9f11f8a4b4e9dd8e486d7f1318a1d

Observation 62282188-f409-46de-aa66-e128cd4c55bb · outbound

This paper cites Transport coefficients of two-flavor quark matter from the Kubo formalism.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Transport coefficients of two-flavor quark matter from the Kubo formalism

Reference 94

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source=pdf_text observed=2026-08-12T12:37:10.319141Z digest=sha256:4699c852bb9085f9e16620b2f089ed88890d26b3b37169b8f4490515eb6636f6

Observation e2746975-16b0-4840-b6dc-3763cce315aa · outbound

This paper cites Hosoya, M.-a.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Hosoya, M.-a

Reference 95

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Observation 768970d1-c3e5-423b-b6e1-b94775b9dc8b · outbound

This paper cites Electrical conductivity of a warm neutron star crust in magnetic fields.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Electrical conductivity of a warm neutron star crust in magnetic fields

Reference 96

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Observation 36d0dda6-8d84-4530-94a4-1d7934fd555a · outbound

This paper cites The electrical conductivity of a pion gas.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model The electrical conductivity of a pion gas

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source=pdf_text observed=2026-08-12T12:37:10.333168Z digest=sha256:780587944ed4dc83b76e1f47b8f70665ca1259ea96b45cdb35f44761fa8d541b

Observation 2719aced-7328-4f86-be99-ed9e8f86feff · outbound

This paper cites Hydrodynamic Transport Coefficients in Relativistic Scalar Field Theory.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Hydrodynamic Transport Coefficients in Relativistic Scalar Field Theory

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source=pdf_text observed=2026-08-12T12:37:10.337715Z digest=sha256:3fa54dd192b5bba5bb480ef221cfa2f19e633aeb057cbf7f2d46c7e6195a39d7

Observation 7b0a3d8f-d6bd-4630-94ab-aa3a799aa164 · outbound

This paper cites From Quantum Field Theory to Hydrodynamics: Transport Coefficients and Effective Kinetic Theory.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model From Quantum Field Theory to Hydrodynamics: Transport Coefficients and Effective Kinetic Theory

Reference 99

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source=pdf_text observed=2026-08-12T12:37:10.342381Z digest=sha256:45542cb860c695f3f01d38c95045a929e21d3548893ec986ca7bfd5b6d494861

Observation 603e9481-5137-4800-84dc-fec2da178feb · outbound

This paper cites Transport coefficients and ladder summation in hot gauge theories.

Effect of chiral imbalance on the electrical conductivity of hot and dense quark matter using Green-Kubo Method within the 2-flavour gauged NJL model Transport coefficients and ladder summation in hot gauge theories

Reference 100

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