• Title/Summary/Keyword: ZnSe/GaAs

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Study on dielectric function of natural ZnSe oxide by spectroscopic ellipsomety (분광타원법을 이용한 ZnSe 자연 산화막의 유전율 함수에 관한 연구)

  • 김태중;성가영;최재규;김영동
    • Journal of the Korean Vacuum Society
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    • v.10 no.2
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    • pp.252-256
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    • 2001
  • We performed spectroscopic ellipsometry measurement to obtain dielectric function(DF) of ZnSe at room temperature. Proper wet chemical etching procedure was carried out to remove overlayers on top of ZnSe, and our result indicates that the previous reports on the pure DF of ZnSe have inaccurate interpretations. We constructed DF of oxide on ZnSe by using reported DFs of amorphous-Se, $GaAsO_3$, and voids through Bruggeman effective-medium approximation.

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Effect of thermal annealing for $ZnIn_2Se_4$ thin films obtained by photoluminescience measurement (광발광 측정으로부터 얻어진 $ZnIn_2Se_4$ 박막의 열처리 효과)

  • Hong, Kwang-Joon
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2009.06a
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    • pp.120-121
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    • 2009
  • Single crystalline $ZnIn_2Se_4$ layers were grown on thoroughly etched semi-insulating GaAs(100) substrate at $400^{\circ}C$ with hot wall epitaxy (HWE) system by evaporating, $ZnIn_2Se_4$ source at $630^{\circ}C$. After the as-grown $ZnIn_2Se_4$ single crystalline thin films was annealed in Zn-, Se-, and In-atmospheres, the origin of point defects of $ZnIn_2Se_4$single crystalline thin films has been investigated by the photoluminescence(PL) at 10 K The native defects of $V_{Zn}$, $V_{Se}$, $Zn_{int}$ and $Se_{int}$ obtained by PL measurements were classified as a donors or acceptors type. And we concluded that the heat-treatment in the Se-atmosphere converted $ZnIn_2Se_4$ single crystalline thin films to an optical p-type. Also, we confirmed that In in $ZnIn_2Se_4$/GaAs did not form the native defects because In in $ZnIn_2Se_4$ single crystalline thin films existed in the form of stable bonds.

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Microstructure of Intermixed $Zn_{1-x}Fe_xSe$ Alloys in (ZnSe/FeSe) Superlattices ((ZnSe/FeSe) 초격자에 있어서 $Zn_{1-x}Fe_xSe$ 상호확산층의 미세구조)

  • Park, Kyeong-Soon
    • Applied Microscopy
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    • v.27 no.3
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    • pp.235-241
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    • 1997
  • The microstructure of intermixed $Zn_{1-x}Fe_xSe$ layers in the (ZnSe/FeSe) superstrates grown on (00l) GaAs substrates has been investigated by high -resolution transmission electron microscopy and computer simulations of lattice images. Computer image simulations have been performed by the multislice method under various sample thicknesses and defocusing conditions. The simulated lattice images were compared with the experimental lattice images. Also, CuAu-I type ordering was often observed in the intermixed $Zn_{1-x}Fe_xSe$ alloys. This CuAu-I type ordered structure consists of alternating ZnSe and FeSe monolayers along the <100> and <110> directions.

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Growth and characterization of ZnSe/GaAs(100) by hot-wall technique (HWE 방법에 의한 ZnSe/GaAs(100)의 성장과 특성)

  • 전경남;고석룡;이경준;정원기;두하영;이춘호
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.6 no.1
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    • pp.56-61
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    • 1996
  • A hot wall epitaxy (HWE) apparatus with double source tubes was manufactured. This apparatus can be used to grow two kinds of epilayers at the same time or to grow heterostructures and multilayers. Undoped ZnSe single crystal films were grown on GaAs(100) substrates byusing this apparatus. SEM, XRD and PL analyses indicated that epilayers had good crystalline and optical quality. The epilayers grown at the source temperature 660 .deg. C and the substrates temperature $350^{\circ}C$. in $2 {\times} 10^{-6}$ toor were mirror like and good quality. PL measurements show that the crystalline qualityis comparable with that of the ZnSe/GaAs epilayer grown by molecular beam epitaxy.

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Growth and characterization of ZnSe/GaAs epilayer by hot-wall epitaxy method (Hot-Wal Epitaxy 방법에 의한 ZnSe/GaAs 박막 성장과 특성)

  • 정태수;강창훈;유평렬
    • Journal of the Korean Vacuum Society
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    • v.8 no.3B
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    • pp.302-307
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    • 1999
  • We have grown a high quality ZnSe(100) epilayer on the GaAs(100) substrate by hot-wall epitaxy method. The FWHM value from double-crystal x-ray diffraction rocking curve and growth rate of the ZnSe epilayer grown under the optimal growth conditions were 195 arcsec and 0.03 $\mu \textrm m$/min, respectively. The $I_2^U$ and $I_2^L$ peaks, which split by strain due to lattice mismatch between substrate and epilayer, were measured from the photoluminescence experiment. And we found that the residual impurities in ZnSe epilayer were concerned with Al or CI elements from the calculated binding energy of donor impurity.

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A study on characteristics of ZnSe epilayer by using surface photovoltage (표면 광전압을 이용한 ZnSe 에피층의 특성 연구)

  • 최상수;정명랑;김주현;배인호;박성배
    • Journal of the Korean Vacuum Society
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    • v.10 no.3
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    • pp.350-355
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    • 2001
  • We have investigated characteristics of ZnSe epilayer grown by molecular beam epitaxy(MBE) on semi-insulating(SI) GaAs by using surface photovoltage(SPV). The measurements of SPV were performed with illumination intensity and modulation frequency. The bandgap energy of ZnSe epilayer was determined from derivative surface photovoltage (DSPV). The five states were observed at room temperature(RT), and those states relate to the impurity and defect formed hetero-interface of ZnSe and GaAs during the sample growth. The observed states represented as a tendency of typical extrinsic transition on the increasing illumination intensity. The 1s and 2s signals related to the excitonic absorption were not observed at RT, but those were presented with the splitted of two peaks in the SPV at 80 K. From the modulation frequency dependence, we obtained the junction conductance and capacitance of the sample.

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Effect of Moisture on Cu(In,Ga)Se2 Solar Cell with (Ga,Al) Co-doped ZnO as Window Layer ((Ga,Al)이 도핑된 ZnO를 투명전극으로 가진 Cu(In,Ga)Se2 태양전지에 수분이 미치는 영향)

  • Yang, So Hyun;Bae, Jin A;Song, Yu Jin;Jeon, Chan Wook
    • Current Photovoltaic Research
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    • v.5 no.4
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    • pp.135-139
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    • 2017
  • We fabricated two different transparent conducting oxide thin films of ZnO doped with Ga ($Ga_2O_3$ 0.9 wt%) as well as Al ($Al_2O_3$ 2.1 wt%) (GAZO) and ZnO doped only with Al ($Al_2O_3$ 3 wt%) (AZO). It was investigated how it affects the moisture resistance of the transparent electrode. In addition, $Cu(In,Ga)Se_2$ thin film solar cells with two transparent oxides as front electrodes were fabricated, and the correlation between humidity resistance of transparent electrodes and device performance of solar cells was examined. When both transparent electrodes were exposed to high temperature distilled water, they showed a rapid increase in sheet resistance and a decrease in the fill factor of the solar cell. However, AZO showed a drastic decrease in efficiency at the beginning of exposure, while GAZO showed that the deterioration of efficiency occurred over a long period of time and that the long term moisture resistance of GAZO was better.

Growth and Characterization of $ZnGa_2Se_4$ Single Crystal Thin Films by Hot Wall Epitaxy (Hot Wall Epitaxy(HWE)에 의한 $ZnGa_2Se_4$단결정 박막 성장과 특성에 관한 연구)

  • 장차익;홍광준;정준우;백형원;정경아;방진주;박창선
    • Korean Journal of Crystallography
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    • v.12 no.3
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    • pp.127-136
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    • 2001
  • A stoichiometric mixture of evaporating materials for ZnGa₂Se₄single crystal thin films was prepared from horizontal furnace. To obtain the single crystal thin films, ZnGa₂Se₄mixed crystal was deposited on thoroughly etched semi-insulating GaAs(100) substrate by the Hot Wall Epitaxy (HWE) system. The source and substrate temperatures were 610℃ and 450℃, respectively. The crystalline structure of the single crystal thin films was investigated by the photoluminescence and double crystal X-ray diffraction (DCXD). The carrier density and mobility of ZnGa₂Se₄single crystal thin films measured from Hall effect by von der Pauw method are 9.63×10/sup 17/㎤ and 296 ㎠/V·s at 293 K, respectively. From the photocurrent spectrum by illumination of perpendicular light on the c-axis of the ZnGa₂Se₄single crystal thin film, we have found that the values of spin orbit splitting △so and the crystal field splitting Δcr were 251.9meV and 183.2 meV at 10 K, respectively. From the photoluminescence measurement on th ZnGa₂Se₄single crystal thin film, we observed free excition (Ex) existing only high quality crystal and neutral bound exiciton (A°, X) having very strong peak intensity. Then, the full-width-at-half-maximum (FWHM) and binding energy of neutral acceptor bound excition were 11 meV and 24.4 meV, respectivity. By Haynes rule, an activation energy of impurity was 122 meV.

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Growth and Optoelectric Characterization of $ZnGa_{2}Se_{4}$ Single Crystal Thin Films by Hot Wall Epitaxy (Hot Wall Epitaxy (HWE)에 의한 $ZnGa_{2}Se_{4}$ 단결정 박막 성장과 광전기적 특성)

  • Park, Chang-Sun;Hong, Kwang-Joon
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2001.11b
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    • pp.163-166
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    • 2001
  • The stochiometric mix of evaporating materials for the $ZnGa_{2}Se_{4}$ single crystal thin films was prepared from horizontal furnace. To obtain the single crystal thin films, $ZnGa_{2}Se_{4}$ mixed crystal was deposited on thoroughly etched semi-insulating GaAs(100) substrate by the Hot Wall Epitaxy (HWE) system. The source and substrate temperature were $610^{\circ}C$ and $450^{\circ}C$, respectively. The crystalline structure of single crystal thin films was investigated by the photoluminescence and double crystal X-ray diffraction (DCXD). The carrier density and mobility of $ZnGa_{2}Se_{4}$ single crystal trun films measured from Hall effect by van der Pauw method are $9.63{\times}10^{17}cm^{-3}$, $296cm^{2}/V{\cdot}s$ at 293 K, respectively. From the photocurrent spectrum by illumination of perpendicular light on the c axis of the $ZnGa_{2}Se_{4}$ single crystal thin film, we have found that the values of spin orbit splitting $\Delta$ So and the crystal field splitting $\Delta$Cr were 251.9 meV and 183.2 meV at 10 K, respectively. From the photoluminescence measurement on $ZnGa_{2}Se_{4}$ single crystal thin film, we observed free excition (Ex) existing only high quality crystal and neutral bound exiciton $(A^{0},X)$ having very strong peak intensity. Then, the full-width-at -half-maximum(FWHM) and binding energy of neutral acceptor bound excition were 11 meV and 24.4 meV, respectivity. By Haynes rule, an activation energy of impurity was 122 meV.

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Growth and Optoelectric Characterization of $ZnGa_{2}Se_{4}$ Sing1e Crystal Thin Films (Hot Wall Epitaxy (HWE)에 의한$ZnGa_{2}Se_{4}$단결정 박막 성장과 광전기적 특성)

  • 박창선;홍광준
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2001.11a
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    • pp.163-166
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    • 2001
  • The stochiometric mix of evaporating materials for the ZnGa$_2$Se$_4$ single crystal thin films was prepared from horizontal furnace. To obtain the single crystal thin films, ZnGa$_2$Se$_4$ mixed crystal was deposited on thoroughly etched semi-insulating GaAs(100) substrate by the Hot Wall Epitaxy (HWE) system. The source and substrate temperature were 61$0^{\circ}C$ and 45$0^{\circ}C$, respectively. The crystalline structure of single crystal thin films was investigated by the photoluminescence and double crystal X-ray diffraction (DCXD). The carrier density and mobility of ZnGa$_2$Se$_4$ single crystal thin films measured from Hall effect by van der Pauw method are 9.63x10$^{17}$ cm$^{-3}$ , 296 $\textrm{cm}^2$/V.s at 293 K, respectively, From the photocurrent spectrum by illumination of perpendicular light on the c-axis of the ZnGa$_2$Se$_4$ single crystal thin film, we have found that the values of spin orbit splitting $\Delta$So and the crystal field splitting $\Delta$Cr were 251.9 MeV and 183.2 meV at 10 K, respectively. From the photoluminescence measurement on ZnGa$_2$Se$_4$ single crystal thin film, we observed free excition (E$_{x}$) existing only high quality crystal and neutral bound excition (A$^{0}$ ,X) having very strong peak intensity. Then, the full-width-at-half-maximum(FWHM) and binding energy of neutral acceptor bound excition were 11 meV and 24.4 meV, respectivity. By Haynes rule, an activation energy of impurity was 122 meV.on energy of impurity was 122 meV.

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