Plasma propulsion modeling with particle-based algorithms

This Perspective paper deals with an overview of particle-in-cell/Monte Carlo collision models applied to different plasma-propulsion configurations and scenarios, from electrostatic ( E × B and pulsed arc) devices to electromagnetic (RF inductive, helicon, electron cyclotron resonance) thrusters, a...

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Published inJournal of applied physics Vol. 134; no. 15
Main Authors Taccogna, F., Cichocki, F., Eremin, D., Fubiani, G., Garrigues, L.
Format Journal Article
LanguageEnglish
Published Melville American Institute of Physics 21.10.2023
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Online AccessGet full text
ISSN0021-8979
1089-7550
1520-8850
1089-7550
DOI10.1063/5.0153862

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Abstract This Perspective paper deals with an overview of particle-in-cell/Monte Carlo collision models applied to different plasma-propulsion configurations and scenarios, from electrostatic ( E × B and pulsed arc) devices to electromagnetic (RF inductive, helicon, electron cyclotron resonance) thrusters, as well as plasma plumes and their interaction with the satellite. The most important items related to the modeling of plasma–wall interaction are also presented. Finally, the paper reports new progress in the particle-in-cell computational methodology, in particular, regarding accelerating computational techniques for multi-dimensional simulations and plasma chemistry Monte Carlo modules for molecular and alternative propellants.
AbstractList This Perspective paper deals with an overview of particle-in-cell/Monte Carlo collision models applied to different plasma-propulsion configurations and scenarios, from electrostatic (E×B and pulsed arc) devices to electromagnetic (RF inductive, helicon, electron cyclotron resonance) thrusters, as well as plasma plumes and their interaction with the satellite. The most important items related to the modeling of plasma–wall interaction are also presented. Finally, the paper reports new progress in the particle-in-cell computational methodology, in particular, regarding accelerating computational techniques for multi-dimensional simulations and plasma chemistry Monte Carlo modules for molecular and alternative propellants.
This Perspective paper deals with an overview of particle-in-cell/Monte Carlo collision models applied to different plasma-propulsion configurations and scenarios, from electrostatic ( E × B and pulsed arc) devices to electromagnetic (RF inductive, helicon, electron cyclotron resonance) thrusters, as well as plasma plumes and their interaction with the satellite. The most important items related to the modeling of plasma–wall interaction are also presented. Finally, the paper reports new progress in the particle-in-cell computational methodology, in particular, regarding accelerating computational techniques for multi-dimensional simulations and plasma chemistry Monte Carlo modules for molecular and alternative propellants.
Author Taccogna, F.
Garrigues, L.
Eremin, D.
Cichocki, F.
Fubiani, G.
Author_xml – sequence: 1
  givenname: F.
  surname: Taccogna
  fullname: Taccogna, F.
  organization: Institute for Plasma Science and Technology (ISTP), CNR
– sequence: 2
  givenname: F.
  surname: Cichocki
  fullname: Cichocki, F.
  organization: Fusion and Technology for Nuclear Safety and Security Department (FSN), ENEA
– sequence: 3
  givenname: D.
  surname: Eremin
  fullname: Eremin, D.
  organization: Institute of Theoretical Electrical Engineering, Ruhr University Bochum
– sequence: 4
  givenname: G.
  surname: Fubiani
  fullname: Fubiani, G.
  organization: LAPLACE, Université de Toulouse, CNRS, INPT, UPS
– sequence: 5
  givenname: L.
  surname: Garrigues
  fullname: Garrigues, L.
  organization: LAPLACE, Université de Toulouse, CNRS, INPT, UPS
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Snippet This Perspective paper deals with an overview of particle-in-cell/Monte Carlo collision models applied to different plasma-propulsion configurations and...
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SubjectTerms Algorithms
Applied physics
Cyclotron resonance
Electron cyclotron resonance
Engineering Sciences
Modelling
Particle in cell technique
Plasma chemistry
Plasma propulsion
Thrusters
Title Plasma propulsion modeling with particle-based algorithms
URI http://dx.doi.org/10.1063/5.0153862
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https://hal.science/hal-04252412
https://pubs.aip.org/aip/jap/article-pdf/doi/10.1063/5.0153862/18177582/150901_1_5.0153862.pdf
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