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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations

As of 14 August 2026, this Paper Citation Record lists 100 of 170 outbound references and 0 inbound Pith citation observations for arXiv:2412.15777.

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2412.15777 v1

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Outbound references

Observation a9b52545-ff52-4180-929c-6d91f2d1c912 · outbound

This paper cites Graziani, M.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Graziani, M

Reference 1

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Observation 2970515b-f932-4520-b514-50399ec74625 · outbound

This paper cites Ab initio simulation of warm dense matter,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Ab initio simulation of warm dense matter,

Reference 2

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Observation 1ebe3291-3dd9-43bf-8dff-29d9f3682a42 · outbound

This paper cites Drake, High-Energy-Density Physics: Founda- tion of Inertial Fusion and Experimental Astrophysics, Graduate Texts in Physics (Springer International Pub- lishing, 2018).

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Drake, High-Energy-Density Physics: Founda- tion of Inertial Fusion and Experimental Astrophysics, Graduate Texts in Physics (Springer International Pub- lishing, 2018)

Reference 3

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Observation 373e0da3-a0d1-49ec-b86b-5365537257e0 · outbound

This paper cites Toward First-principles based simulations of dense hydrogen,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Toward First-principles based simulations of dense hydrogen,

Reference 4

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Observation e905ac0a-c32e-460d-b598-6903d56cc58a · outbound

This paper cites Progress in warm dense matter study with applications to planetology,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Progress in warm dense matter study with applications to planetology,

Reference 5

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Observation bc1cc564-2a0e-4e1b-9409-ddb33b83aa0d · outbound

This paper cites Hydrogen-helium mixtures in the interiors of giant planets,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Hydrogen-helium mixtures in the interiors of giant planets,

Reference 6

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This paper cites Ab initio equations of state for hydrogen (h-reos.3) and helium (he-reos.3) and their implications for the interior of brown dwarfs,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Ab initio equations of state for hydrogen (h-reos.3) and helium (he-reos.3) and their implications for the interior of brown dwarfs,

Reference 7

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Observation adf92682-c836-4087-bf3f-f71f3fc79f6e · outbound

This paper cites Current challenges in the physics of white dwarf stars,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Current challenges in the physics of white dwarf stars,

Reference 8

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Observation 7793b344-2428-4ae2-a066-bd3d9dd87f7b · outbound

This paper cites Nanosecond formation of diamond and lonsdaleite by shock com- pression of graphite,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Nanosecond formation of diamond and lonsdaleite by shock com- pression of graphite,

Reference 9

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Observation cc50f1fa-ab3c-4505-990a-b1ac9cc9fac2 · outbound

This paper cites Plasmon-induced hot carrier science and tech- nology,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Plasmon-induced hot carrier science and tech- nology,

Reference 10

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Observation 49be3c0c-5927-40ca-afb2-c3c19fa28790 · outbound

This paper cites Physics principles of inertial confinement fu- sion and U.S. program overview,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Physics principles of inertial confinement fu- sion and U.S. program overview,

Reference 11

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Observation ac1f681b-514c-4b38-8472-0edf46af2286 · outbound

This paper cites Inertial-confinement fu- sion with lasers,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Inertial-confinement fu- sion with lasers,

Reference 12

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Observation 24700a33-fdc9-4dcf-b264-f88da6934ff9 · outbound

This paper cites First-principles equation-of-state table of deuterium for inertial confinement fusion applications,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations First-principles equation-of-state table of deuterium for inertial confinement fusion applications,

Reference 13

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This paper cites Future for inertial- fusion energy in Europe: a roadmap,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Future for inertial- fusion energy in Europe: a roadmap,

Reference 14

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Observation ab6880c6-eea0-41b9-8cb2-bd3c396f23f8 · outbound

This paper cites Experimental methods for warm dense matter research,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Experimental methods for warm dense matter research,

Reference 15

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Observation 007d045e-6745-4afc-a07f-25a68e2a2da2 · outbound

This paper cites The National Ignition Facility: Usher- ing in a new age for high energy density science,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations The National Ignition Facility: Usher- ing in a new age for high energy density science,

Reference 16

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This paper cites Observing the onset of pressure-driven K-shell delocalization,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Observing the onset of pressure-driven K-shell delocalization,

Reference 17

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This paper cites The collid- ing planar shocks platform to study warm dense matter at the National Ignition Facility,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations The collid- ing planar shocks platform to study warm dense matter at the National Ignition Facility,

Reference 18

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Linac Coherent Light Source: The first five years,

Reference 19

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Mat- ter under extreme conditions experiments at the Linac Coherent Light Source,

Reference 20

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This paper cites The Role of the Laboratory for Laser Energetics in the National Ignition Facility Project,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations The Role of the Laboratory for Laser Energetics in the National Ignition Facility Project,

Reference 21

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This paper cites Observations of plasmons in warm dense matter,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Observations of plasmons in warm dense matter,

Reference 22

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This paper cites The Laser Mega- Joule : LMJ, PETAL status and Program Overview,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations The Laser Mega- Joule : LMJ, PETAL status and Program Overview,

Reference 23

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This paper cites Pho- ton Beam Transport and Scientific Instruments at the European XFEL,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Pho- ton Beam Transport and Scientific Instruments at the European XFEL,

Reference 24

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This paper cites X-ray Thomson scatter- ing in high energy density plasmas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations X-ray Thomson scatter- ing in high energy density plasmas,

Reference 25

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This paper cites Sheffield, D.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Sheffield, D

Reference 26

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This paper cites Ultrabright X-ray laser scattering for dy- namic warm dense matter physics,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Ultrabright X-ray laser scattering for dy- namic warm dense matter physics,

Reference 27

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Theoretical model of x-ray scattering as a dense matter probe,

Reference 28

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Evidence of free-bound transitions in warm dense matter and their impact on equation-of-state measurements

Reference 29

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This paper cites Electron-Ion Tempera- ture Relaxation in Warm Dense Hydrogen Observed With Picosecond Resolved X-Ray Scattering,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Electron-Ion Tempera- ture Relaxation in Warm Dense Hydrogen Observed With Picosecond Resolved X-Ray Scattering,

Reference 30

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This paper cites Free-Electron X-Ray Laser Measurements of Collisional-Damped Plasmons in Isochorically Heated Warm Dense Matter,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Free-Electron X-Ray Laser Measurements of Collisional-Damped Plasmons in Isochorically Heated Warm Dense Matter,

Reference 31

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This paper cites Accurate temperature di- agnostics for matter under extreme conditions,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Accurate temperature di- agnostics for matter under extreme conditions,

Reference 32

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This paper cites Imaginary-time cor- relation function thermometry: A new, high-accuracy and model-free temperature analysis technique for x-ray Thomson scattering data,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Imaginary-time cor- relation function thermometry: A new, high-accuracy and model-free temperature analysis technique for x-ray Thomson scattering data,

Reference 33

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations X-ray Thomson scattering absolute intensity from the f-sum rule in the imaginary- time domain,

Reference 34

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Model-free Rayleigh weight from x-ray Thomson scattering measurements

Reference 35

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Revealing non- equilibrium and relaxation in laser heated matter,

Reference 36

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Observation 268505f7-d8ac-4642-8e1e-69141e40b71e · outbound

This paper cites X-ray Thomson scat- tering spectra from density functional theory molecular dynamics simulations based on a modified Chihara for- mula,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations X-ray Thomson scat- tering spectra from density functional theory molecular dynamics simulations based on a modified Chihara for- mula,

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Observation 7054d533-c5de-4508-bf13-92f19f812183 · outbound

This paper cites Unraveling electronic correlations in warm dense quantum plasmas.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Unraveling electronic correlations in warm dense quantum plasmas

Reference 38

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Observation 42d013bd-da5f-42e4-b191-537625aa333a · outbound

This paper cites Ultrahigh resolution x- ray Thomson scattering measurements at the European X-ray Free Electron Laser,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Ultrahigh resolution x- ray Thomson scattering measurements at the European X-ray Free Electron Laser,

Reference 39

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Observation 563f6462-a682-4836-bf39-bdb121823c41 · outbound

This paper cites Electron dynamics in extended systems within real-time time-dependent density-functional theory,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Electron dynamics in extended systems within real-time time-dependent density-functional theory,

Reference 40

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Observation 24dcff35-cdfd-4686-b3cc-dbc498b144c3 · outbound

This paper cites Equa- tion of state measurements of warm dense carbon using laser-driven shock and release technique,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Equa- tion of state measurements of warm dense carbon using laser-driven shock and release technique,

Reference 41

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Observation 9ba4d52a-89b4-4044-8596-ba1d2587196d · outbound

This paper cites Self-consistent measurement of the equation of state of liquid deuterium,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Self-consistent measurement of the equation of state of liquid deuterium,

Reference 42

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Observation a7cdef32-08bf-4e15-9ec8-6ba1580cc2cf · outbound

This paper cites Recent progress in the theory and simulation of strongly corre- lated plasmas: phase transitions, transport, quantum, and magnetic field effects,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Recent progress in the theory and simulation of strongly corre- lated plasmas: phase transitions, transport, quantum, and magnetic field effects,

Reference 43

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Observation 5f403b3c-fc4b-408e-8564-25b212156e62 · outbound

This paper cites Electronic density response of warm dense mat- ter,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Electronic density response of warm dense mat- ter,

Reference 44

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Observation a894b9ee-d6a8-4201-9997-267dcb0ec8de · outbound

This paper cites Giuliani and G.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Giuliani and G

Reference 45

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Observation dcf79c96-d6db-4887-b45c-4a493fa8d497 · outbound

This paper cites Anderson, Quantum Monte Carlo: Origins, Devel- opment, Applications (Oxford University Press, USA, 2007).

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Anderson, Quantum Monte Carlo: Origins, Devel- opment, Applications (Oxford University Press, USA, 2007)

Reference 46

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Observation 5c2e6d55-aaf4-48f0-a8ed-b8f91d5f2651 · outbound

This paper cites On path integral Monte Carlo simulations,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations On path integral Monte Carlo simulations,

Reference 47

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Observation b191a4cf-ebfe-4a7d-962d-da4da5134788 · outbound

This paper cites Simulation of quan- tum many-body systems by path-integral methods,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Simulation of quan- tum many-body systems by path-integral methods,

Reference 48

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Observation ab945ea1-2543-4fb7-ad69-92cf21f1fe03 · outbound

This paper cites Monte Carlo Calculation of Quantum Systems,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Monte Carlo Calculation of Quantum Systems,

Reference 49

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Observation 63a09e0f-7151-41f0-b591-bca86506f79e · outbound

This paper cites The uniform electron gas at warm dense matter conditions,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations The uniform electron gas at warm dense matter conditions,

Reference 50

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Observation 8b667fe8-20a9-4301-ba8b-473e76caf1c3 · outbound

This paper cites The uniform electron gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations The uniform electron gas,

Reference 51

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Observation 9c9dec31-ebf9-4bdc-a15b-2d0f53c422d6 · outbound

This paper cites Ground state of the electron gas by a stochastic method,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Ground state of the electron gas by a stochastic method,

Reference 52

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Observation 8f4a244a-9afb-41ca-899d-299ee6e0ad58 · outbound

This paper cites Correlation energy, structure factor, radial distribution function, and momentum dis- tribution of the spin-polarized uniform electron gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Correlation energy, structure factor, radial distribution function, and momentum dis- tribution of the spin-polarized uniform electron gas,

Reference 53

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Observation 19af48fc-0965-472d-9cc3-50caa75f8e95 · outbound

This paper cites Zero temperature phases of the electron gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Zero temperature phases of the electron gas,

Reference 54

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Observation eff0b1ac-d714-4780-a7b2-fe4d5531ffb6 · outbound

This paper cites Static re- sponse from quantum Monte Carlo calculations,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Static re- sponse from quantum Monte Carlo calculations,

Reference 55

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Observation 2cd390fe-bf56-4e13-86b3-c4893500c956 · outbound

This paper cites Static response and local field factor of the electron gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Static response and local field factor of the electron gas,

Reference 56

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Observation b4b2ed83-9023-448b-a9a2-54377cf37db8 · outbound

This paper cites Quantum Monte Carlo study of the three-dimensional 15 spin-polarized homogeneous electron gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Quantum Monte Carlo study of the three-dimensional 15 spin-polarized homogeneous electron gas,

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Observation a60e152e-1188-4e7c-a40b-73937ab5fdf2 · outbound

This paper cites Density functional theory: Its origins, rise to prominence, and future,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Density functional theory: Its origins, rise to prominence, and future,

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Observation 1d447b6c-031d-43cb-926b-c7589eb09505 · outbound

This paper cites Path-Integral Monte Carlo Simulation of the Warm Dense Homogeneous Electron Gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Path-Integral Monte Carlo Simulation of the Warm Dense Homogeneous Electron Gas,

Reference 59

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Observation 6e05d30b-7d14-49dd-8285-c75106af6767 · outbound

This paper cites Ab initio thermodynamic results for the degenerate electron gas at finite temperature,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Ab initio thermodynamic results for the degenerate electron gas at finite temperature,

Reference 60

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Observation 42590703-e1d8-4d6a-9867-4f01d25ad226 · outbound

This paper cites Fermionic path-integral Monte Carlo results for the uniform electron gas at finite temperature,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Fermionic path-integral Monte Carlo results for the uniform electron gas at finite temperature,

Reference 61

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Observation c67a777f-ecd5-4bac-9fb0-9bb6fb4876b8 · outbound

This paper cites Ab initio quan- tum Monte Carlo simulation of the warm dense electron gas in the thermodynamic limit,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Ab initio quan- tum Monte Carlo simulation of the warm dense electron gas in the thermodynamic limit,

Reference 62

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Observation db5684ce-7c1d-467b-b458-f4e38220560d · outbound

This paper cites Ab initio exchange– correlation free energy of the uniform electron gas at warm dense matter conditions,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Ab initio exchange– correlation free energy of the uniform electron gas at warm dense matter conditions,

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Observation 4dac0d96-49f2-4b1a-a9dc-8ac541f7df2b · outbound

This paper cites Interaction picture density matrix quantum Monte Carlo,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Interaction picture density matrix quantum Monte Carlo,

Reference 64

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Observation e5e1447e-5a99-45f7-8e66-c7ac6b476ee0 · outbound

This paper cites Accurate exchange-correlation en- ergies for the warm dense electron gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Accurate exchange-correlation en- ergies for the warm dense electron gas,

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Observation e2765c9c-5775-413c-9fd4-54ccf84200e5 · outbound

This paper cites Restricted configuration path integral Monte Carlo,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Restricted configuration path integral Monte Carlo,

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Observation 06d2726b-ba2c-4886-8c04-a56c85aae3e7 · outbound

This paper cites Exchange-correlation effect in the charge response of a warm dense electron gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Exchange-correlation effect in the charge response of a warm dense electron gas,

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Observation 8492293a-e5c2-49b8-abcc-bb9d55fcfebe · outbound

This paper cites A phaseless auxiliary-field quantum Monte Carlo perspective on the uniform electron gas at finite tem- peratures: Issues, observations, and benchmark study,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations A phaseless auxiliary-field quantum Monte Carlo perspective on the uniform electron gas at finite tem- peratures: Issues, observations, and benchmark study,

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Observation f106ad1c-f643-424c-bda0-e08bc8b673d3 · outbound

This paper cites The static local field correction of the warm dense electron gas: An ab initio path integral Monte Carlo study and machine learning representation,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations The static local field correction of the warm dense electron gas: An ab initio path integral Monte Carlo study and machine learning representation,

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Observation 48096e50-e8c0-4ab0-8e21-9d86249e8970 · outbound

This paper cites Configuration path integral Monte Carlo approach to the static density response of the warm dense electron gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Configuration path integral Monte Carlo approach to the static density response of the warm dense electron gas,

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Observation 2cbfe72d-3a51-46c5-8909-711627e98780 · outbound

This paper cites Strongly coupled electron liquid: Ab initio path integral Monte Carlo simulations and di- electric theories,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Strongly coupled electron liquid: Ab initio path integral Monte Carlo simulations and di- electric theories,

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Observation 96468410-8f1b-4b9a-a491-5c0a597b8ea4 · outbound

This paper cites Effective static approximation: A fast and re- liable tool for warm-dense matter theory,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Effective static approximation: A fast and re- liable tool for warm-dense matter theory,

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Observation 81748946-88f1-4fa9-bcea-ce8f3ac02e53 · outbound

This paper cites Analytical representation of the local field correction of the uniform electron gas within the effec- tive static approximation,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Analytical representation of the local field correction of the uniform electron gas within the effec- tive static approximation,

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Observation 0f009559-fa72-4a51-acc1-19c6ffaed43e · outbound

This paper cites Spin-resolved density response of the warm dense electron gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Spin-resolved density response of the warm dense electron gas,

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This paper cites Nonlinear electronic density response in warm dense matter,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Nonlinear electronic density response in warm dense matter,

Reference 75

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This paper cites Den- sity response of the warm dense electron gas beyond linear response theory: Excitation of harmonics,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Den- sity response of the warm dense electron gas beyond linear response theory: Excitation of harmonics,

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Nonlinear density response from imaginary- time correlation functions: Ab initio path integral Monte Carlo simulations of the warm dense electron gas,

Reference 77

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Observation fc15f83f-0dcd-4b33-a5d2-73dbcdce8e44 · outbound

This paper cites Nonlinear density response and higher order correlation functions in warm dense matter,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Nonlinear density response and higher order correlation functions in warm dense matter,

Reference 78

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Observation 4dfe2a9e-350a-4a76-b255-08f85fb7bdff · outbound

This paper cites Ab initio results for the static structure factor of the warm dense electron gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Ab initio results for the static structure factor of the warm dense electron gas,

Reference 79

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This paper cites Momentum distribution function and short-range correlations of the warm dense electron gas: Ab initio quantum Monte Carlo results,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Momentum distribution function and short-range correlations of the warm dense electron gas: Ab initio quantum Monte Carlo results,

Reference 80

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Observation 257866a7-5a9f-41e3-a91c-89c352d265ec · outbound

This paper cites Ab initio path integral Monte Carlo approach to the momentum distribution of the uniform electron gas at finite temperature with- out fixed nodes,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Ab initio path integral Monte Carlo approach to the momentum distribution of the uniform electron gas at finite temperature with- out fixed nodes,

Reference 81

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Observation ec0970f6-cfdc-48fc-83fd-b6036e7dbdec · outbound

This paper cites Momentum distribution of the uniform electron gas at finite temperature: Effects of spin polarization,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Momentum distribution of the uniform electron gas at finite temperature: Effects of spin polarization,

Reference 82

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Observation 535af770-88b1-4ec9-9947-3a47b7e24702 · outbound

This paper cites Lowering of the kinetic energy in interacting quantum systems,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Lowering of the kinetic energy in interacting quantum systems,

Reference 83

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Observation a6efb58b-893c-4d51-adc7-192b58f21646 · outbound

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Path integral Monte Carlo calculation of the momentum dis- tribution of the homogeneous electron gas at finite tem- perature,

Reference 84

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Observation c2e1b487-d41f-431d-b1f0-c0963548c664 · outbound

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations The uniform electron gas at high temperatures: ab initio path integral Monte Carlo simulations and analytical theory,

Reference 85

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Observation 12473986-caf3-4d3a-9e52-4e6dee4ff2a6 · outbound

This paper cites Virial coefficients of the uniform electron gas from path-integral Monte Carlo simulations,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Virial coefficients of the uniform electron gas from path-integral Monte Carlo simulations,

Reference 86

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Physical insights from imaginary-time density–density correla- tion functions,

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Observation 608b3b42-8b1b-47df-966d-c50b31734f56 · outbound

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Analysing the dy- namic structure of warm dense matter in the imaginary- time domain: theoretical models and simulations,

Reference 88

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Extraction of the frequency moments of spectral densities from imaginary-time correlation func- tion data,

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Observation 41158005-28cb-47c8-b135-73744ee58806 · outbound

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Ab initio path integral Monte Carlo results for the dy- namic structure factor of correlated electrons: From the electron liquid to warm dense matter,

Reference 90

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Observation c8cb75d6-0a43-4800-85fe-66e605095bd7 · outbound

This paper cites Ab initio path integral Monte Carlo approach to the static and dynamic density response of the uniform electron gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Ab initio path integral Monte Carlo approach to the static and dynamic density response of the uniform electron gas,

Reference 91

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Observation f3d31cc1-f6e9-4cdd-8b3e-30ec75f9c794 · outbound

This paper cites Electronic pair alignment and roton feature in the warm dense electron gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Electronic pair alignment and roton feature in the warm dense electron gas,

Reference 92

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Unresolved cited work

Reference 93

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Observation bac8c36d-64cf-4e1c-b87e-22796535f57c · outbound

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Fourier–Matsubara series expansion for imaginary–time correlation functions,

Reference 94

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Dynamic exchange correlation effects in the strongly coupled electron liquid,

Reference 95

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Quantum delocalization, structural order, and density response of the strongly coupled electron liquid,

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Observation dd8f7506-3384-42a2-a771-63c7aeea83a0 · outbound

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Short wavelength limit of the dynamic Matsubara local field correction

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Observation 406dad6f-c385-48c3-8038-6f695479f9dd · outbound

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Accurate homogeneous electron gas exchange-correlation free energy for local spin-density calculations,

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Observation ac34801b-3d28-49ef-a9b6-c801e0853460 · outbound

This paper cites Sta- tus of free-energy representations for the homogeneous electron gas,.

Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Sta- tus of free-energy representations for the homogeneous electron gas,

Reference 99

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Chemical potential of the warm dense electron gas from ab initio path integral Monte Carlo simulations Thermal properties of the inhomo- geneous electron gas,

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