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3D Self-Consistent Full Wave – PIC Models for Investigating Space-Resolved ECR Plasma Properties
by
Pidatella, A
, Rácz, R
, Naselli, E
, Mishra, B
, Mauro, GS
, Mascali, D
, Torrisi, G
, Salvia, C
, Galatà, A
, Biri, S
in
Cyclotron resonance
/ Electron beams
/ Electron cyclotron resonance
/ Ion beams
/ Ion dynamics
/ Ion sources
2024
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3D Self-Consistent Full Wave – PIC Models for Investigating Space-Resolved ECR Plasma Properties
by
Pidatella, A
, Rácz, R
, Naselli, E
, Mishra, B
, Mauro, GS
, Mascali, D
, Torrisi, G
, Salvia, C
, Galatà, A
, Biri, S
in
Cyclotron resonance
/ Electron beams
/ Electron cyclotron resonance
/ Ion beams
/ Ion dynamics
/ Ion sources
2024
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Do you wish to request the book?
3D Self-Consistent Full Wave – PIC Models for Investigating Space-Resolved ECR Plasma Properties
by
Pidatella, A
, Rácz, R
, Naselli, E
, Mishra, B
, Mauro, GS
, Mascali, D
, Torrisi, G
, Salvia, C
, Galatà, A
, Biri, S
in
Cyclotron resonance
/ Electron beams
/ Electron cyclotron resonance
/ Ion beams
/ Ion dynamics
/ Ion sources
2024
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3D Self-Consistent Full Wave – PIC Models for Investigating Space-Resolved ECR Plasma Properties
Journal Article
3D Self-Consistent Full Wave – PIC Models for Investigating Space-Resolved ECR Plasma Properties
2024
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Overview
Simulations are a powerful method to study the correlation between output beams and internal dynamics of electron cyclotron resonance ion sources (ECRIS), which involve a complex interplay between injected power, RF frequency, gas type and pressure. We present here some details on 3D full-wave Particle-in-Cell (PIC) code suites that can simulate electron and ion dynamics self-consistently in an ECR plasma. Preliminary runs of the simulation show an encouraging match with experimental data which acts as a benchmark for the PIC codes and highlights its potential for fundamental and applied interdisciplinary plasma research.
Publisher
IOP Publishing
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