Study of Plasma Characteristics Using Tailored Pulse DC Bias
ORAL · Invited
Abstract
Tailored pulse DC waveform-based plasma processing has gained attention as a promising method to produce narrow and monoenergetic IEDs [2–4]. In this study, we investigate the characteristics of plasma under various tailored pulse DC bias waveforms applied to the substrate in an inductively coupled plasma (ICP) reactor. Plasma parameters, including ion energy distributions, were measured and analyzed to understand the effect of waveform shape on energy control.
The results suggest that tailored pulse DC biasing provides a viable route to engineer ion energy distributions with greater precision. These findings are expected to contribute to the development of customized pulse waveform design and advanced plasma processing strategies for next-generation semiconductor fabrication.
[1] Clark R. et al., APL Mater., 2018, 6, 058203.
[2] Wang S. B. and Wendt A. E., J. Appl. Phys., 2000, 88, 643–646.
[3] Faraz T. et al., J. Appl. Phys., 2020, 128, 213301.
[4] Yu Q. et al., Plasma Sources Sci. Technol., 2022, 31, 035012.
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Presenters
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Jong Sik Kim
Korea Institute of Fusion Energy(KFE), KFE, Plasma Equipment Intelligence Convergence Research Center, Korea Institute of Fusion Energy, Korea
Authors
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Jong Sik Kim
Korea Institute of Fusion Energy(KFE), KFE, Plasma Equipment Intelligence Convergence Research Center, Korea Institute of Fusion Energy, Korea
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Sung-Roc JANG
Korea Electrotechnology Research Institute(KERI)
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Yonghyun Kim
Korea Institute of Fusion Energy(KFE), KFE, Plasma Equipment Intelligence Convergence Research Center, Korea Institute of Fusion Energy, Korea, Korea Institute of Fusion Energy
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Dae-Chul Kim
Korea Institute of Fusion Energy(KFE), Plasma Equipment Intelligence Convergence Research Center, Korea Institute of Fusion Energy, Korea
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SANGHYEOK PARK
Korea Institute of Fusion Energy(KFE), Plasma Equipment Intelligence Convergence Research Center, Korea Institute of Fusion Energy, Korea
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Jongbae PARK
Korea Institute of Fusion Energy(KFE)
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Jonghyun SHIN
Korea Institute of Fusion Energy(KFE)
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Young-Woo KIM
Korea Institute of Fusion Energy(KFE)
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Jung-Sik YOON
Korea Institute of Fusion Energy(KFE)