Advances in Intelligent Systems and Computing, pages 407-418

1D-3v PIC-MCC Based Modeling and Simulation of Magnetized Low-Temperature Plasmas

Miral Shah 1
Bhaskar Chaudhury 1
Mainak Bandyopadhyay 2, 3
Arun Chakraborty 2
Publication typeBook Chapter
Publication date2020-12-11
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ISSN21945357
Abstract
Shah, Miral Chaudhury, Bhaskar Bandyopadhyay, Mainak Chakraborty, ArunAccurate investigation of the physics of magnetized Low-Temperature Plasmas (LTP) involving drifts and instabilities is a challenging task. Electrons in such plasmas are magnetized, whereas ions are not completely magnetized. Presence of different collision mechanisms due to high neutral density (compared to plasma density), and in homogeneous magnetic fields, leads to complex plasma transport involving several time and length scales. Although computationally expensive, simulation of such plasmas using a kinetic model is the best way to improve the current understanding of such systems. In this paper, we present a 1D-3V Particle-In-cell Monte-Carlo collision (PIC-MCC) based simulations of such plasmas, wherein the ROBIN negative ion source (consisting of an LTP source with a magnetic filter) installed at IPR, Gandhinagar is taken as a testbed problem for the validation of the model. Results from our 1D-3V model provide a good match with the available experimental results from ROBIN. Finally, we conclude the paper by summarizing the limitations of our 1D simulations and the requirement of more accurate 2D simulations in such scenarios.
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Shah M. et al. 1D-3v PIC-MCC Based Modeling and Simulation of Magnetized Low-Temperature Plasmas // Advances in Intelligent Systems and Computing. 2020. pp. 407-418.
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Shah M., Chaudhury B., Bandyopadhyay M., Chakraborty A. 1D-3v PIC-MCC Based Modeling and Simulation of Magnetized Low-Temperature Plasmas // Advances in Intelligent Systems and Computing. 2020. pp. 407-418.
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TY - GENERIC
DO - 10.1007/978-981-15-8061-1_32
UR - https://doi.org/10.1007/978-981-15-8061-1_32
TI - 1D-3v PIC-MCC Based Modeling and Simulation of Magnetized Low-Temperature Plasmas
T2 - Advances in Intelligent Systems and Computing
AU - Shah, Miral
AU - Chaudhury, Bhaskar
AU - Bandyopadhyay, Mainak
AU - Chakraborty, Arun
PY - 2020
DA - 2020/12/11
PB - Springer Nature
SP - 407-418
SN - 2194-5357
ER -
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@incollection{2020_Shah,
author = {Miral Shah and Bhaskar Chaudhury and Mainak Bandyopadhyay and Arun Chakraborty},
title = {1D-3v PIC-MCC Based Modeling and Simulation of Magnetized Low-Temperature Plasmas},
publisher = {Springer Nature},
year = {2020},
pages = {407--418},
month = {dec}
}
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