Physics and applications of dusty plasmas: The Perspectives 2023

Физика и приложения пылевой плазмы: перспективы на 2023 год
J. Beckers, Johannes Berndt, Dietmar Block, M. Bönitz, Peter Bruggeman, Lénaïc Couëdel, Gian Luca Delzanno, Yan Feng, Ranganathan Gopalakrishnan, Franko Greiner, Péter Hartmann, M. Horányi, Holger Kersten, Christina A. Knapek, Uwe Konopka, Uwe Kortshagen, Evdokiya Kostadinova, Eva Kovačević, S. I. Krasheninnikov, Ingrid Mann, Davide Mariotti, Lorin Matthews, A. Melzer, Maxime Mikikian, V. Nosenko, Mikhail Pustylnik, S. Ratynskaia, R. Mohan Sankaran, V. Schneider, Elijah Thimsen, Edward Thomas, Hubertus M. Thomas, P. Tolias, Mark van de Kerkhof
2023-12-01

dusty plasmasmicrogravity experimentsnanoparticle synthesisplasma crystalsstrongly coupled plasmas
Dusty plasmas are electrically quasi-neutral media that, along with electrons, ions, neutral gas, radiation, and electric and/or magnetic fields, also contain solid or liquid particles with sizes ranging from a few nanometers to a few micrometers. These media can be found in many natural environments as well as in various laboratory setups and industrial applications. As a separate branch of plasma physics, the field of dusty plasma physics was born in the beginning of 1990s at the intersection of the interests of the communities investigating astrophysical and technological plasmas. An additional boost to the development of the field was given by the discovery of plasma crystals leading to a series of microgravity experiments of which the purpose was to investigate generic phenomena in condensed matter physics using strongly coupled complex (dusty) plasmas as model systems. Finally, the field has gained an increasing amount of attention due to its inevitable connection to the development of novel applications ranging from the synthesis of functional nanoparticles to nuclear fusion and from particle sensing and diagnostics to nano-contamination control. The purpose of the present perspectives paper is to identify promising new developments and research directions for the field. As such, dusty plasmas are considered in their entire variety: from classical low-pressure noble-gas dusty discharges to atmospheric pressure plasmas with aerosols and from rarefied astrophysical plasmas to dense plasmas in nuclear fusion devices. Both fundamental and application aspects are covered.
1
Dusty plasmas are quasi-neutral media containing charged particles, neutral gas, radiation, and fields alongside solid or liquid particles ranging from nanometers to micrometers.
2
Dusty-plasma research supports applications spanning functional nanoparticle synthesis, nuclear fusion, particle sensing and diagnostics, and nano-contamination control.
3
Strongly coupled dusty plasmas provide model systems for investigating generic condensed-matter phenomena, particularly through plasma-crystal and microgravity studies.
4
The field emerged in the early 1990s at the intersection of astrophysical and technological plasma research and was further advanced by plasma-crystal discoveries and microgravity experiments.
5
The perspectives paper identifies promising future developments across dusty plasmas ranging from low-pressure discharges and atmospheric aerosols to astrophysical and fusion-device plasmas, covering fundamental and applied research.

Dusty plasmas across natural, laboratory, industrial, astrophysical, and nuclear-fusion environments

Promising new developments and research directions, including fundamental phenomena and applications of dusty plasmas

Publication Details
Publication Date
2023-12-01
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Cited by
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Authors
J. Beckers
Johannes Berndt
Dietmar Block
M. Bönitz
Peter Bruggeman
Lénaïc Couëdel
Gian Luca Delzanno
Yan Feng
Ranganathan Gopalakrishnan
Franko Greiner
Péter Hartmann
M. Horányi
Holger Kersten
Christina A. Knapek
Uwe Konopka
Uwe Kortshagen
Evdokiya Kostadinova
Eva Kovačević
S. I. Krasheninnikov
Ingrid Mann
Davide Mariotti
Lorin Matthews
A. Melzer
Maxime Mikikian
V. Nosenko
Mikhail Pustylnik
S. Ratynskaia
R. Mohan Sankaran
V. Schneider
Elijah Thimsen
Edward Thomas
Hubertus M. Thomas
P. Tolias
Mark van de Kerkhof
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