• Title/Summary/Keyword: $CH_4/H_2/Ar$ plasma

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OPTICAL EMISSION SPECTROSCOPY OF Ch$_4$/Ar/H$_2$ GAS DISCHARGES IN RF PLASMA CVD OF HYDROGENATED AMORPHOUS CARBON FILMS

  • Lee, Sung-Soo;Osamu Takai
    • Journal of the Korean institute of surface engineering
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    • v.29 no.6
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    • pp.648-653
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    • 1996
  • Hydrogenated amorphous carbon(a-C:H) films are prepared by rf plasma CVD in a $CH_4$ source gas system diluted with Ar of $H_2$. The spectra of emissive and reactive species in the plasma are detected using in stiu optical emission spectroscopy. Inaddition, the relationship between the film properties which can be varied by the deposition parameters and the Raman spectra is studied. In the $CH_4/H_2$ gas system, the emission intensities of CH and $H \tau$ decrease and those of $H \alpha$, $H \beta$, $C_2$ and Ar increase with increasing $H_2$ concentration, The formation of $C_2$ and CH in the $CH_4/Ar/H_2$ gas system is greatly suppressed by hydrogen addition and the excess of hydrogen addition is found to form graphite structure. The $C_2$ formation in the gas phase enhances a-C:H film formation.

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Dry Etching Characteristics of GaN using a Planar Inductively Coupled CHsub $CH_4/H_2/Ar$ Plasma (평판 유도 결합형 $CH_4/H_2/Ar$ 플라즈마를 이용한 GaN 건식 식각 특성)

  • Kim, Mun-Yeong;Baek, Yeong-Sik;Tae, Heung-Sik;Lee, Yong-Hyeon;Lee, Jeong-Hui;Lee, Ho-Jun
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.48 no.9
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    • pp.616-621
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    • 1999
  • A planar inductively coupled $CH_4/H_2/Ar$plasma was used to investigate dry etch characteristics of GaN as a function of input power, RF bias power, and etch gas composition. Etch rate of GaN increased with input power up to 600 W and was saturated at the higher power. Also, the etch rates increased with increasing RF bias power, composition of $CH_4$ and Ar gas. We achieved the maximum etch rate of $930{\AA}$/min at the input power 400 W, RF bias power 250 W, and operational pressure 10 mTorr. This paper shows that smooth etched surface having roughness less than 1 nm in rms can be obtained by using planar inductively coupled plasma with $CH_4/H_2/Ar$ gas chemistry.

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Infinite Selectivity Etching Process of Silicon Nitride to ArF PR Using Dual-frequency $CH_2F_2/H_2/Ar$ Capacitively Coupled Plasmas (Dual-frequency $CH_2F_2/H_2/Ar$ capacitively coupled plasma를 이용한 실리콘질화물과 ArF PR의 무한 선택비 식각 공정)

  • Park, Chang-Ki;Lee, Chun-Hee;Kim, Hui-Tae;Lee, Nae-Eung
    • Journal of the Korean institute of surface engineering
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    • v.39 no.3
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    • pp.137-141
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    • 2006
  • Process window for infinite etch selectivity of silicon nitride $(Si_3N_4)$ layers to ArF photoresist (PR) was investigated in dual frequency superimposed capacitive coupled plasma (DFS-CCP) by varying the process parameters such as low frequency power $(P_{LF})$, $CH_2F_2$ and $H_2$ flow rate in $CH_2F_2/H_2/Ar$ plasma. It was found that infinite etch selectivities of $Si_3N_4$ layers to the ArF PR on both blanket and patterned wafers can be obtained for certain gas flow conditions. The etch selectivity was increased to the infinite values as the $CH_2F_2$ flow rate increases, while it was decreased from the infinite etch selectivity as the $H_2$ flow rate increased. The preferential chemical reaction of the hydrogen with the carbon in the polymer film and the nitrogen on the $Si_3N_4$ surface leading to the formation of HCN etch by-products results in a thinner steady-state polymer and, in turn, to continuous $Si_3N_4$ etching, due to enhanced $SiF_4$ formation, while the polymer was deposited on the ArF photoresist surface.

The Effects of Etch Process Parameters on the Ohmic Contact Formation in the Plasma Etching of GaN using Planar Inductively Coupled $CH_4/H_2/Ar$ Plasma (평판 유도 결합형 $CH_4/H_2/Ar$ 플라즈마를 이용한 GaN 건식 식각에서 공정변수가 저항성 접촉 형성에 미치는 영향)

  • Kim, Mun-Yeong;Tae, Heung-Sik;Lee, Ho-Jun;Lee, Yong-Hyeon;Lee, Jeong-Hui;Baek, Yeong-Sik
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.49 no.8
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    • pp.438-444
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    • 2000
  • We report the effects of etch process parameters on the ohmic contact formation in the plasma etching of GaN. Planar inductively coupled plasma system with $CH_4/H_2/Ar$gas chemistry has been used as etch reactor. The contact resistance and the specific contact resistance have been investigated using transfer length method as a function of RF bias power and %Ar gas concentration in total flow rate. AES(Auger electron spectroscopy) analysis revealed that the etched GaN has nonstoichiometric Ga rich surface and was contaminated by carbon and oxygen. Especially large amount of carbon was detected at the sample etched for high bias power (or voltage) condition, where severe degradation of contact resistance was occurred. We achieved the low ohmic contact of $2.4{\times}10^{-3} {\Omega}cm^2$ specific contact resistance at the input power 400 W, RF bias power 150 W, and working pressure 10mTorr with 10 sccm $CH_4$, 15 sccm H2, 5 sccm Ar gas composition.

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Dry Etching Characteristics of GaN using a Magnetized Inductively Coupled $CH_4/H_2/Ar$ Plassma (자화 유도 결합형 $CH_4/H_2/Ar$ 플라즈마를 이용한 GaN 건식 식각 특성)

  • Kim, Mun-Yeong;Sim, Jong-Gyeong;Tae, Heung-Sik;Lee, Ho-Jun;Lee, Yong-Hyeon;Lee, Jeong-Hui;Baek, Yeong-Sik
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.49 no.4
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    • pp.203-209
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    • 2000
  • This paper proposes the improvement of the etch rate of GaN using a magnetized inductively coupled $CH_4/H_2/Ar$plasma. The gradient magnetic field with the axial direction is investigated using Gauss-meter and the ion current density is measured using double Langmuir probe. The applied magnetic field changes the ion current density profile in the radial direction, resulting in producing the higher density in the outer region than in the center. GaN dry etching process is carried out based on the measurements of the ion current density. The each rate of 2000 /min is achieved with $CH_4/H_2/Ar$ chemistries at 800 W input power, 250W rf bias power, 10 mTorr pressure and 100 gauss magnetic field.

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Improving the etch properties and selectivity of BLT thin film adding $CH_4$ gas in $Ar/Cl_2$ plasma ($Ar/Cl_2$ plasma에서 $CH_4$ 첨가에 따른 BLT 박막의 식각특성 및 선택비 향상)

  • Kim, Jong-Gyu;Kim, Gwan-Ha;Kim, Kyoung-Tae;Woo, Jong-Chang;Kim, Chang-Il
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.1321-1322
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    • 2007
  • $Ar/Cl_2$, $Ar/CH_4$$Ar/Cl_{2}/CH_{4}$ 유도결합 플라즈마의 가스 혼합비에 따른 BLT 박막의 식각 메커니즘과 선택비, 식각 후 박막 표면의 조성변화를 조사하였다. BLT 박막의 최대식각률은 $Ar/Cl_2$ 플라즈마에서의 Ar 가스 혼합비가 80%일 때 50.8 nm의 값을 보였다. 이 때, 1sccm의 $CH_4$ 첨가를 통하여 선택비와 식각률을 개선할 수 있었다. 박막 표면의 xPS 분석을 통해 BLT 박막 표면의 조성변화는 Cl 원자와의 반응에 의한 화학적 식각 손상이 H 원자와의 반응에 의한 그것보다 크다는 것을 알 수 있었다.

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The Effects of CF4 Partial Pressure on the Hydrophobic Thin Film Formation on Carbon Steel by Surface Treatment and Coating Method with Linear Microwave Ar/CH4/CF4 Plasma

  • Han, Moon-Ki;Cha, Ju-Hong;Lee, Ho-Jun;Chang, Cheol Jong;Jeon, Chang Yeop
    • Journal of Electrical Engineering and Technology
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    • v.12 no.5
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    • pp.2007-2013
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    • 2017
  • In order to give hydrophobic surface properties on carbon steel, the fluorinated amorphous carbon films were prepared by using linear 2.45GHz microwave PECVD device. Two different process approaches have been tested. One is direct deposition of a-C:H:F films using admixture of $Ar/CH_4/CF_4$ working gases and the other is surface treatment using $CF_4$ plasma after deposition of a-C:H film with $Ar/CH_4$ binary gas system. $Ar/CF_4$ plasma treated surface with high $CF_4$ gas ratio shows best hydrophobicity and durability of hydrophobicity. Nanometer scale surface roughness seems one of the most important factors for hydrophobicity within our experimental conditions. The properties of a-C:H:F films and $CF_4$ plasma treated a-C:H films were investigated in terms of surface roughness, hardness, microstructure, chemical bonding, atomic bonding structure between carbon and fluorine, adhesion and water contact angle by using atomic force microscopy (AFM), nano-indentation, Raman analysis and X-ray photoelectron spectroscopy (XPS).

DRY ETCHING CHARACTERISTICS OF INGAN USING INDUCTIVELY COUPLED $Cl_2/CHF_3,{\;}Cl_2/CH_4$ AND Cl_2/Ar PLASMAS.

  • Lee, D.H.;Kim, H.S.;G.Y. Yeom;Lee, J.W.;Kim, T.I.
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 1999.10a
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    • pp.59-59
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    • 1999
  • In this study, planer inductively coupled $Cl_2$ based plasmas were used to etch InGaN and the effects of plasma conditions on the InGaN etch properties have been characterized using quadrupole mass spectrometry(QMS) and optical emission spectroscopy(OES). As process conditions used to study the effects of plasma characteristics on the InGaN etch properties, $Cl_2$ was used as the main etch gas and $CHF_3,{\;}CH_4$, and Ar were used as additive gases. Operational pressure was varied from SmTorr to 3OmTorr, inductive power and bias voltage were varied from 400W to 800W and -50V to -250V, respectively while the substrate temperature was fixed at 50 centigrade. For the $Cl_2$ plasmas, selective etching of GaN to InGaN was obtained regardless of plasma conditions. The small addition of $CHF_3$ or Ar to $Cl_2$ and the decrease of pressure generally increased InGaN etch rates. The selective etching of InGaN to GaN could be obtained by the reduction of pressure to l5mTorr in $CI_2/IO%CHF_3{\;}or{\;}CI_2/IO%Ar$ plasma. The enhancement of InGaN etch rates was related to the ion bombardment for $CI_2/Ar$ plasmas and the formation of $CH_x$ radicals for $CI_2/CHF_3(CH_4)$ plasmas.

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Frequency effect of TEOS oxide layer in dual-frequency capacitively coupled CH2F2/C4F8/O2/Ar plasma

  • Lee, J.H.;Kwon, B.S.;Lee, N.E.
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.284-284
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    • 2011
  • Recently, the increasing degree of device integration in the fabrication of Si semiconductor devices, etching processes of nano-scale materials and high aspect-ratio (HAR) structures become more important. Due to this reason, etch selectivity control during etching of HAR contact holes and trenches is very important. In this study, The etch selectivity and etch rate of TEOS oxide layer using ACL (amorphous carbon layer) mask are investigated various process parameters in CH2F2/C4F8/O2/Ar plasma during etching TEOS oxide layer using ArF/BARC/SiOx/ACL multilevel resist (MLR) structures. The deformation and etch characteristics of TEOS oxide layer using ACL hard mask was investigated in a dual-frequency superimposed capacitively coupled plasma (DFS-CCP) etcher by different fHF/ fLF combinations by varying the CH2F2/ C4F8 gas flow ratio plasmas. The etch characteristics were measured by on scanning electron microscopy (SEM) And X-ray photoelectron spectroscopy (XPS) analyses and Fourier transform infrared spectroscopy (FT-IR). A process window for very high selective etching of TEOS oxide using ACL mask could be determined by controlling the process parameters and in turn degree of polymerization. Mechanisms for high etch selectivity will discussed in detail.

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Properties of Inductively coupled Ar/CH4 plasma based on plasma diagnostics with fluid simulation

  • Cha, Ju-Hong;Son, Ui-Jeong;Yun, Yong-Su;Han, Mun-Gi;Kim, Dong-Hyeon;Lee, Ho-Jun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2016.02a
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    • pp.210.2-210.2
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    • 2016
  • An inductively coupled plasma source was prepared for the deposition of a-C:H thin film. Properties of the inductively coupled plasma source are investigated by fluid simulation including Navier-Stokes equations and home-made tuned single Langmuir probe. Signal attenuation ratios of the Langmuir probe harmonic frequency were 13.56Mhz and 27.12Mhz. Dependencies of plasma parameters on process parameters were accord with simulation results. Ar/CH4 plasma simulation results shown that hydrocarbon radical densities have their lowest value at the vicinity of gas feeding line due to high flow velocity. For input power density of 0.07W/cm3, CH radical density qualitatively follows electron density distribution. On the other hand, central region of the chamber become deficient in CH3 radical due to high dissociation rate accompanied with high electron density. The result suggest that optimization of discharge power is important for controlling deposition film quality in high density plasma sources.

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