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Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study

As of 7 August 2026, this Paper Citation Record lists 25 of 25 outbound references and 0 inbound Pith citation observations for arXiv:2607.24044.

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Outbound references

Observation f5af92eb-72b9-4b80-b021-fe151ff16488 · outbound

This paper cites Charged dust dynamics in the solar system.Annual review of astronomy and astrophysics, 34(1):383–418, 1996.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Charged dust dynamics in the solar system.Annual review of astronomy and astrophysics, 34(1):383–418, 1996

Reference 1

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Observation 81a5e95c-aca0-4b75-b5cf-863181f65cc3 · outbound

This paper cites Complex plasma: dusts in plasma.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Complex plasma: dusts in plasma

Reference 2

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Observation 57b67aa8-6911-444d-90dd-66833764625c · outbound

This paper cites Positive charging of grains in an afterglow plasma is enhanced by ions drifting in an electric field.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Positive charging of grains in an afterglow plasma is enhanced by ions drifting in an electric field

Reference 3

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Observation 409761c6-a9de-4169-be56-e5fc48a6e5eb · outbound

This paper cites Dusty plasmas in the laboratory, industry, and space.Physics Today, 57(7):32–38, 2004.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Dusty plasmas in the laboratory, industry, and space.Physics Today, 57(7):32–38, 2004

Reference 4

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Observation 6dc50752-1d25-457a-96af-54f933fd5ca5 · outbound

This paper cites The 2022 plasma roadmap: low temper- ature plasma science and technology.Journal of Physics D: Applied Physics, 55(37):373001, 2022.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study The 2022 plasma roadmap: low temper- ature plasma science and technology.Journal of Physics D: Applied Physics, 55(37):373001, 2022

Reference 5

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Observation 199b06b8-3bfa-4c42-bf98-ce1d36c0fe58 · outbound

This paper cites Dusty plasmas: physics, chemistry, and technological impacts in plasma processing.(No Ti- tle), 1999.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Dusty plasmas: physics, chemistry, and technological impacts in plasma processing.(No Ti- tle), 1999

Reference 6

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Observation 9f77725a-4b6c-450d-9aa1-223c6f946828 · outbound

This paper cites Plasma- material interactions in current tokamaks and their im- plications for next step fusion reactors.Nuclear fusion, 41(12):1967–2137, 2001.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Plasma- material interactions in current tokamaks and their im- plications for next step fusion reactors.Nuclear fusion, 41(12):1967–2137, 2001

Reference 7

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Observation 2a46985e-7298-4c06-ac80-e54deea878a2 · outbound

This paper cites Complex (dusty) plasmas: Current status, open issues, perspectives.Physics reports, 421(1-2):1– 103, 2005.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Complex (dusty) plasmas: Current status, open issues, perspectives.Physics reports, 421(1-2):1– 103, 2005

Reference 8

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Observation d55c1484-6932-4e60-878e-f923e1d9344f · outbound

This paper cites Introducing dusty plasma particle growth of nanospherical titanium diox- ide.Applied Physics Letters, 124(14), 2024.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Introducing dusty plasma particle growth of nanospherical titanium diox- ide.Applied Physics Letters, 124(14), 2024

Reference 9

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Observation d9dad306-bbdf-4465-b9b2-0ff7cd375f29 · outbound

This paper cites Low- temperature processed beta-phase in2se3 ferroelectric semiconductor thin film transistors.2D Materials, 9(2):025023, 2022.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Low- temperature processed beta-phase in2se3 ferroelectric semiconductor thin film transistors.2D Materials, 9(2):025023, 2022

Reference 10

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Observation 78dfcff1-6911-4a9b-9383-82deb6ee142a · outbound

This paper cites Dust in Proto-Planetary Disks: Properties and Evolution.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Dust in Proto-Planetary Disks: Properties and Evolution

Reference 11

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Observation badbf893-6f79-4272-b1c8-3098076ed6d2 · outbound

This paper cites CRC press, 2015.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study CRC press, 2015

Reference 12

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Observation f61fcbb1-c833-4750-a394-340f9fc9613b · outbound

This paper cites Cambridge University Press, 2020.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Cambridge University Press, 2020

Reference 13

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Observation 355b3eb8-371d-4f6a-a6cc-e2ab179a9ffd · outbound

This paper cites Plasma crystal: Coulomb crystallization in a dusty plasma.Physical Review Let- ters, 73(5):652, 1994.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Plasma crystal: Coulomb crystallization in a dusty plasma.Physical Review Let- ters, 73(5):652, 1994

Reference 14

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Observation 9cdb5838-49b4-497f-8cb3-321c0b353ab0 · outbound

This paper cites Square lattice formation in a monodisperse complex plasma.Physical Review Letters, 129(11):115003, 2022.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Square lattice formation in a monodisperse complex plasma.Physical Review Letters, 129(11):115003, 2022

Reference 15

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Observation c4c6cae3-d34b-4ca1-ae3a-ef376118e319 · outbound

This paper cites Transverse waves in a two-dimensional screened-coulomb crystal (dusty plasma).Physical review letters, 84(22):5141, 2000.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Transverse waves in a two-dimensional screened-coulomb crystal (dusty plasma).Physical review letters, 84(22):5141, 2000

Reference 16

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Observation ba37b894-a818-4a92-b069-efb7a9a45e5c · outbound

This paper cites Initial measurements of two-and three-dimensionalordering, waves, andplasmafilamenta- tion in the magnetized dusty plasma experiment.Physics of Plasmas, 23(5), 2016.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Initial measurements of two-and three-dimensionalordering, waves, andplasmafilamenta- tion in the magnetized dusty plasma experiment.Physics of Plasmas, 23(5), 2016

Reference 17

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Observation 513c1388-3f0f-4f13-a5d1-33c16476f1d2 · outbound

This paper cites Transport and trapping of dust particles in a poten- tial well created by inductively coupled diffused plasmas.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Transport and trapping of dust particles in a poten- tial well created by inductively coupled diffused plasmas

Reference 18

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Observation 1badba7e-276b-4f0f-aaac-82bd6760bddf · outbound

This paper cites Springer, 2017.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Springer, 2017

Reference 19

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Observation 791faeee-c204-43ac-965d-80a40f21c2c4 · outbound

This paper cites Influence of external magnetic field on dust acoustic waves in a capacitive rf discharge.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Influence of external magnetic field on dust acoustic waves in a capacitive rf discharge

Reference 20

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Observation 775267d1-1f76-48cc-b954-7941a2541e91 · outbound

This paper cites Trapping of waves in a flowing dusty plasma.Physics of Plasmas, 29(12), 2022.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Trapping of waves in a flowing dusty plasma.Physics of Plasmas, 29(12), 2022

Reference 21

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Observation ee3b07b3-ade4-499d-880d-abf81072f63b · outbound

This paper cites Ring struc- turaltransitionsinstronglycoupleddustyplasmas.Phys- ical Review E, 107(5):055208, 2023.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Ring struc- turaltransitionsinstronglycoupleddustyplasmas.Phys- ical Review E, 107(5):055208, 2023

Reference 22

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Observation c01c40ba-fe93-436e-9217-b31d04841bd7 · outbound

This paper cites Preservation of a dust crystal as it falls in an afterglow plasma.Frontiers in Physics, page 479, 2022.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Preservation of a dust crystal as it falls in an afterglow plasma.Frontiers in Physics, page 479, 2022

Reference 23

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Observation 7053577e-49e6-468f-8a5f-81f4c1c4405a · outbound

This paper cites Controlling the charge of dust particles in a plasma afterglow by timed switching of an electrode voltage.Journal of Physics D: Applied Physics, 56(37):375202, 2023.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Controlling the charge of dust particles in a plasma afterglow by timed switching of an electrode voltage.Journal of Physics D: Applied Physics, 56(37):375202, 2023

Reference 24

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Observation da467c27-c3c1-4081-a432-d5b77d9f2674 · outbound

This paper cites Fast parallel algorithms for short-range molecular dynamics.Journal of computational physics, 117(1):1–19, 1995.

Gravitational Sedimentation and Rebound of Strongly Coupled Dusty Plasma Crystals: A Molecular Dynamics Study Fast parallel algorithms for short-range molecular dynamics.Journal of computational physics, 117(1):1–19, 1995

Reference 25

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