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Numerical analysis of effects of ion-neutral collision processes on RF ICP discharge

The discharge process of a radiofrequency (RF) inductively coupled plasma (ICP) has been modeled by an ElectroMagnetic Particle-in-Cell Monte Carlo Collision method (EM PIC-MCC). Although the simulation had been performed by our previous model to investigate the discharge mode transition of the RF I...

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Detalles Bibliográficos
Autores principales: Nishida, K, Mattei, S, Lettry, J, Hatayama, A
Lenguaje:english
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1063/1.5002169
http://cds.cern.ch/record/2694250
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author Nishida, K
Mattei, S
Lettry, J
Hatayama, A
author_facet Nishida, K
Mattei, S
Lettry, J
Hatayama, A
author_sort Nishida, K
collection CERN
description The discharge process of a radiofrequency (RF) inductively coupled plasma (ICP) has been modeled by an ElectroMagnetic Particle-in-Cell Monte Carlo Collision method (EM PIC-MCC). Although the simulation had been performed by our previous model to investigate the discharge mode transition of the RF ICP from a kinetic point of view, the model neglected the collision processes of ions (H$^{+}$ and H$_{2}^{+}$) with neutral particles. In this study, the RF ICP discharge process has been investigated by the latest version of the model which takes the ion-neutral collision processes into account. The basic characteristics of the discharge mode transition provided by the previous model have been verified by the comparison between the previous and present results. As for the H-mode discharge regime, on the other hand, the ion-neutral collisions play an important role in evaluating the growth of the plasma. Also, the effect of the ion-neutral collisions on the kinetic feature of the plasma has been investigated, which has highlighted the importance of kinetic perspective for modeling the RF ICP discharge.
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institution Organización Europea para la Investigación Nuclear
language english
publishDate 2018
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spelling oai-inspirehep.net-17566782021-03-01T10:44:03Zdoi:10.1063/1.5002169http://cds.cern.ch/record/2694250englishNishida, KMattei, SLettry, JHatayama, ANumerical analysis of effects of ion-neutral collision processes on RF ICP dischargeDetectors and Experimental TechniquesThe discharge process of a radiofrequency (RF) inductively coupled plasma (ICP) has been modeled by an ElectroMagnetic Particle-in-Cell Monte Carlo Collision method (EM PIC-MCC). Although the simulation had been performed by our previous model to investigate the discharge mode transition of the RF ICP from a kinetic point of view, the model neglected the collision processes of ions (H$^{+}$ and H$_{2}^{+}$) with neutral particles. In this study, the RF ICP discharge process has been investigated by the latest version of the model which takes the ion-neutral collision processes into account. The basic characteristics of the discharge mode transition provided by the previous model have been verified by the comparison between the previous and present results. As for the H-mode discharge regime, on the other hand, the ion-neutral collisions play an important role in evaluating the growth of the plasma. Also, the effect of the ion-neutral collisions on the kinetic feature of the plasma has been investigated, which has highlighted the importance of kinetic perspective for modeling the RF ICP discharge.oai:inspirehep.net:17566782018
spellingShingle Detectors and Experimental Techniques
Nishida, K
Mattei, S
Lettry, J
Hatayama, A
Numerical analysis of effects of ion-neutral collision processes on RF ICP discharge
title Numerical analysis of effects of ion-neutral collision processes on RF ICP discharge
title_full Numerical analysis of effects of ion-neutral collision processes on RF ICP discharge
title_fullStr Numerical analysis of effects of ion-neutral collision processes on RF ICP discharge
title_full_unstemmed Numerical analysis of effects of ion-neutral collision processes on RF ICP discharge
title_short Numerical analysis of effects of ion-neutral collision processes on RF ICP discharge
title_sort numerical analysis of effects of ion-neutral collision processes on rf icp discharge
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1063/1.5002169
http://cds.cern.ch/record/2694250
work_keys_str_mv AT nishidak numericalanalysisofeffectsofionneutralcollisionprocessesonrficpdischarge
AT matteis numericalanalysisofeffectsofionneutralcollisionprocessesonrficpdischarge
AT lettryj numericalanalysisofeffectsofionneutralcollisionprocessesonrficpdischarge
AT hatayamaa numericalanalysisofeffectsofionneutralcollisionprocessesonrficpdischarge