• 제목/요약/키워드: Inductively coupled plasmas

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Application of Si and SiO2 Etching Mechanisms in CF4/C4F8/Ar Inductively Coupled Plasmas for Nanoscale Patterns (나노패턴을 위한 CF4/C4F8/Ar 유도결합 플라즈마에서의 Si 및 SiO2 식각 메커니즘 연구)

  • Lee, Jae-Min;Gwon, Gwang-Ho
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2015.11a
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    • pp.240-240
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    • 2015
  • 본 논문에서는 플라즈마 모델링과 식각 표면 분석을 통해 가스 비율 변화에 따른 $CF_4/C_4F_8/Ar$ 유도결합 플라즈마의 특성과 Si 및 $SiO_2$의 식각 메커니즘에 대해 연구하였다.

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The Etch Characteristics of TiN Thin Film Surface in the CH4 Plasma (CH4 플라즈마에 따른 TiN 박막 표면의 식각특성 연구)

  • Woo, Jong-Chang;Um, Doo-Seung;Kim, Gwan-Ha;Kim, Dong-Pyo;Kim, Chang-Il
    • Journal of the Korean institute of surface engineering
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    • v.41 no.5
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    • pp.189-193
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    • 2008
  • In this study, we carried out an investigation of the etching characteristics (etch rate, selectivity to $SiO_2$ and $HfO_2$) of TiN thin films in the $CH_4$/Ar inductively coupled plasma. The maximum etch rate of $274\;{\AA}/min$ for TiN thin films was obtained at $CH_4$(80%)/Ar(20%) gas mixing ratio. At the same time, the etch rate was measured as function of the etching parameters such as RF power, Bias power, and process pressure. The X-ray photoelectron spectroscopy analysis showed an efficient destruction of the oxide bonds by the ion bombardment as well as showed an accumulation of low volatile reaction products on the etched surface. Based on these data, the ion-assisted chemical reaction was proposed as the main etch mechanism for the $CH_4$ containing plasmas.

The Use of Inductively Coupled CF4/Ar Plasma to Improve the Etch Rate of ZrO2 Thin Films

  • Kim, Han-Soo;Woo, Jong-Chang;Joo, Young-Hee;Kim, Chang-Il
    • Transactions on Electrical and Electronic Materials
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    • v.14 no.1
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    • pp.12-15
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    • 2013
  • In this study, we carried out an investigation of the etching characteristics (etch rate, and selectivity to $SiO_2$) of $ZrO_2$ thin films in a $CF_4$/Ar inductively coupled plasma (ICP) system. The maximum etch rate of 60.8 nm/min for $ZrO_2$ thin films was obtained at a 20 % $CF_4/(CF_4+Ar)$ gas mixing ratio. At the same time, the etch rate was measured as a function of the etching parameter, namely ICP chamber pressure. X-ray photoelectron spectroscopy (XPS) analysis showed efficient destruction of the oxide bonds by the ion bombardment, as well as an accumulation of low volatile reaction products on the etched surface. Based on these data, the ion-assisted chemical reaction was proposed as the main etch characteristics for the $CF_4$-containing plasmas.

Inductively coupled plasma etching of SnO2 as a new absorber material for EUVL binary mask

  • Lee, Su-Jin
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.08a
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    • pp.124-124
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    • 2010
  • Currently, extreme ultraviolet lithography (EUVL) is being investigated for next generation lithography. EUVL is one of competitive lithographic technologies for sub-22nm fabrication of nano-scale Si devices that can possibly replace the conventional photolithography used to make today's microcircuits. Among the core EUVL technologies, mask fabrication is of considerable importance due to the use of new reflective optics having a completely different configuration compared to those of conventional photolithography. Therefore, new materials and new mask fabrication process are required for high performance EUVL mask fabrication. This study investigated the etching properties of SnO2 (Tin Oxide) as a new absorber material for EUVL binary mask. The EUVL mask structure used for etching is SnO2 (absorber layer) / Ru (capping / etch stop layer) / Mo-Si multilayer (reflective layer) / Si (substrate). Since the Ru etch stop layer should not be etched, infinitely high selectivity of SnO2 layer to Ru ESL is required. To obtain infinitely high etch selectivity and very low LER (line edge roughness) values, etch parameters of gas flow ratio, top electrode power, dc self - bias voltage (Vdc), and etch time were varied in inductively coupled Cl2/Ar plasmas. For certain process window, infinitely high etch selectivity of SnO2 to Ru ESL could be obtained by optimizing the process parameters. Etch characteristics were measured by on scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS) analyses. Detailed mechanisms for ultra-high etch selectivity will be discussed.

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Dry Etching of BST using Inductively Coupled Plasma

  • Kim, Gwan-Ha;Kim, Kyoung-Tae;Kim, Dong-Pyo;Kim, Chang-Il
    • Transactions on Electrical and Electronic Materials
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    • v.6 no.2
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    • pp.46-50
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    • 2005
  • BST thin films were etched with inductively coupled CF$_{4}$/(Cl$_{2}$+Ar) plasmas. The etch characteristics of BST thin films as a function of CF$_{4}$/(Cl$_{2}$+Ar) gas mixtures were analyzed using optical emission spectroscopy (OES) and Langmuir probe. The BST films in CF$_{4}$/Cl$_{2}$/Ar plasma is mainly etched by the formation of metal chlorides which depends on the emission intensity of the atomic Cl and the bombarding ion energy. The maximum etch rate of the BST thin films was 53.6 nm/min because small addition of CF$_{4}$ to the Cl$_{2}$/Ar mixture increased chemical and physical effect. A more fast etch rate of BST films can be obtained by increasing the DC bias and the RF power, and lowering the working pressure.