• Title/Summary/Keyword: InGaAs/GaAs

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InAlGaAs 장벽층의 상분리 현상에 따른 InAs 나노 양자점의 성장거동 연구

  • Jo, Byeong-Gu;Kim, Jae-Su;Lee, Gwang-Jae;Park, Dong-U;Kim, Hyeon-Jun;Hwang, Jeong-U;O, Hye-Min;Kim, Jin-Su;Choe, Byeong-Seok;O, Dae-Gon
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.165-165
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    • 2010
  • $1.55\;{\mu}m$ 대역의 레이저 다이오드를 제작하기 위해, InP(001) 기판에 InAlGaAs 물질을 장벽층으로 하는 InAs 양자점 구조를 분자선증착기 (MBE)를 이용하여 성장하고 구조 및 광학적 특성을 Double Crystal X-ray Diffraction (DCXRD), Atomic Force Microscopy (AFM), Photoluminescence (PL)을 이용하여 평가하였다. 일반적으로 InAlGaAs 물질은 고유한 상분리 현상 (Phase Separation)이 나타나는 특성이 있으며, 이는 양자점 성장에 중요한 요인으로 작용할 수 있다. 이러한 InAlGaAs 물질의 상분리 현상을 기판온도 ($540^{\circ}C$, $555^{\circ}C$, $570^{\circ}C$)를 비롯한 성장변수를 변화시켜 제어하고 InAs 양자점 형성에 어떠한 영향을 미치는지를 분석하였다. 540의 성장온도에서 InP(001) 기판에 격자정합한 InAlGaAs 장벽층이 성장온도를 $570^{\circ}C$로 증가시킬 경우 기판에 대하여 인장 응력 (Tensile Strain)을 받는 구조로 변화되었다. 인장응력을 받는 InAlGaAs 장벽층을 Ga Flux 양을 조절하여 격자정합한 InAlGaAs 층을 형성할 수 있었다. AFM을 통한 표면 형상 분석 결과, 서로 다른 기판온도에서 성장한 InAlGaAs 물질이 InP(001) 기판에 격자정합 조건일지라도 표면의 거칠기 (Surface Roughness)는 매우 다른 양상을 보였고 InAs 양자점 형성에 직접적으로 영향을 주었다. $570^{\circ}C$에서 성장한 InAlGaAs 위에 형성한 InAs 양자점의 가로방향 크기를 세로방향 크기로 나눈 비율이 1.03으로서, 555와 $540^{\circ}C$의 1.375 와 1.636와 비교할 때 모양 대칭성이 현저히 개선된 것을 알 수 있다. 상분리 현상이 줄어 표면 거칠기가 좋은 InAlGaAs 위에 양자점을 형성할 때 원자들의 이동도가 상대적으로 높아 InAs 양자점의 크기가 증가하고, 밀도가 감소하는 현상이 나타났다. 또한 InAlGaAs 장벽층이 InP(001) 기판을 기준으로 응력 (Compressive 또는 Tensile)이 존재하는 경우, InAs 양자점 모양이 격자정합 조건 보다 비대칭적으로 변하는 특성을 보여 주었다. 이로부터, 대칭성이 개선된 InAs 양자점 형성에 InAlGaAs 장벽층의 표면 거칠기와 응력이 중요한 변수로 작용함을 확인 할 수 있었다. PL 측정 결과, 발광파장은 $1.61\;{\mu}m$로 InAs 양자구조 형상에 따라 광강도 (Intensity), 반치폭 (Line-width broadening) 등이 변화 되었다.

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Impurity Diffusion Enhancement of Interdiffusion in GalnAsP Heterostructures Lattice Matched to GaAs and InP (GaAs와 InP에 격자정합된 GaINAsP 이중조직에서 불순물 확산에 의한 상호확산 촉진)

  • Park, Hyo-Hun;Lee, Gyeong-Ho;Nam, Eun-Su;Lee, Yong-Tak
    • ETRI Journal
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    • v.11 no.4
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    • pp.84-97
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    • 1989
  • The influence of Zn, Si and Te diffusion on the interdiffusion in $GaAs-Ga_1_-xIN_xAs_1__yP_y$and InP$Ga_1__xIn_xAs_1__yP_y$ heterostructures was studied. The heterostructures were grown by liquid phase epitaxy, and the impurity diffusion into the heterostructures was carried out using metal compound or element sources. The extent of interdiffusion for both group III and V atoms was observed by depth profiling of matrix elements with secondary ion mass spectrometry and Auger electron spectroscopy. Selective enhancement of cation interdiffusion was observed by the concurrent Zn diffusion in both the GaAs based-and InP based-crystals. In contrast to the Zn diffusion, the Si diffusion in the GaAs based-crystal and the Te diffusion in the InP based-crystal enhanced both cation and anion interdiffusion to the same extent. A kick-out mechanism is proposed to explain the selective enhancement of the cation interdiffusion due to Zn, and a single vacancy mechanism is proposed for the interdiffusion due to Si and Te.

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Pulsed DC $BCl_3/SF_6$ 플라즈마를 이용한 GaAs와 AlGaAs의 선택적 식각에 관한 연구

  • Choe, Gyeong-Hun;Kim, Jin-U;No, Gang-Hyeon;Sin, Ju-Yong;Park, Dong-Gyun;Song, Han-Jeong;Lee, Je-Won
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.67-67
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    • 2011
  • Pulsed DC $BCl_3/SF_6$ 플라즈마를 사용하여 GaAs와 AlGaAs의 건식 식각을 연구하였다. 식각 공정 변수는 가스 유량 (50~100 % $BCl_3$ in $BCl_3/SF_6$), 펄스 파워 (450~600 V), 펄스 주파수 (100~250 KHz), 리버스 시간 (0.4~1.2 ${\mu}s$)이었다. 식각 공정 후 표면 단차 측정기 (Surface profiler)를 사용하여 표면의 단차와 거칠기를 분석하였다. 그 결과를 이용하여 식각률 (Etch rate), 표면거칠기 (Surface roughness), 식각 선택비 (Selectivity)와 같은 특성 평가를 하였다. 실험 후 주사 현미경 (FE-SEM, Field Emission Scanning Electron Microscopy)을 이용, 식각 후 시료의 단면과 표면을 관찰하였다. 실험 결과에 의하면 1) 18 sccm $BCl_3$ / 2 sccm $SF_6$, 500 V (Pulsed DC voltage), 0.7 ${\mu}s$ (Reverse time), 200 KHz (Pulsed DC frequency), 공정 압력이 100 mTorr인 조건에서 GaAs와 Al0.2Ga0.8As의 식각 선택비가 약 48:1로 우수한 결과를 나타내었다. 2) 펄스 파워 (Pulsed DC voltage), 리버스 시간(Reverse time), 펄스 주파수(Pulsed DC frequency)의 증가에 따라 각각 500~550 V, 0.7~1.0 ${\mu}s$, 그리고 200~250 KHz 구간에서 AlGaAs에 대한 GaAs의 선택비가 감소하게 되는 것을 알 수 있었다. 이는 척 (chuck)에 인가되는 전류와 파워를 증가시키고, 따라서 GaAs의 식각률이 크게 증가했지만 AlGaAs 또한 식각률이 증가하게 되면서 GaAs에 대한 식각 선택비가 감소한 것으로 생각된다. 3) 표면 단차 측정기와 주사전자현미경 사진 결과에서는 GaAs의 경우 10% $SF_6$ (18 sccm $BCl_3$ / 2 sccm $SF_6$)가 혼합된 조건에서 상당히 매끈한 표면 (RMS roughness < 1.0 nm)과 높은 식각률 (~0.35 ${\mu}m$/min), 수직의 식각 측벽 확보에서 매우 좋은 결과를 보여주었다. 또한 같은 공정 조건에서 AlGaAs는 식각이 거의 되지 않은 결과 (~0.03 ${\mu}m$/min)를 보여주었다. 위의 결과들을 종합해 볼 때 Pulsed DC $BCl_3/SF_6$ 플라즈마는 GaAs와 AlGaAs의 선택적 식각 공정에서 매우 우수한 공정 결과를 나타내었다.

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Characteristics of InGaAs/GaAs/AlGaAs Double Barrier Quantum Well Infrared Photodetectors

  • Park, Min-Su;Kim, Ho-Seong;Yang, Hyeon-Deok;Song, Jin-Dong;Kim, Sang-Hyeok;Yun, Ye-Seul;Choe, Won-Jun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.324-325
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    • 2014
  • Quantum wells infrared photodetectors (QWIPs) have been used to detect infrared radiations through the principle based on the localized stated in quantum wells (QWs) [1]. The mature III-V compound semiconductor technology used to fabricate these devices results in much lower costs, larger array sizes, higher pixel operability, and better uniformity than those achievable with competing technologies such as HgCdTe. Especially, GaAs/AlGaAs QWIPs have been extensively used for large focal plane arrays (FPAs) of infrared imaging system. However, the research efforts for increasing sensitivity and operating temperature of the QWIPs still have pursued. The modification of heterostructures [2] and the various fabrications for preventing polarization selection rule [3] were suggested. In order to enhance optical performances of the QWIPs, double barrier quantum well (DBQW) structures will be introduced as the absorption layers for the suggested QWIPs. The DBWQ structure is an adequate solution for photodetectors working in the mid-wavelength infrared (MWIR) region and broadens the responsivity spectrum [4]. In this study, InGaAs/GaAs/AlGaAs double barrier quantum well infrared photodetectors (DB-QWIPs) are successfully fabricated and characterized. The heterostructures of the InGaAs/GaAs/AlGaAs DB-QWIPs are grown by molecular beam epitaxy (MBE) system. Photoluminescence (PL) spectroscopy is used to examine the heterostructures of the InGaAs/GaAs/AlGaAs DB-QWIP. The mesa-type DB-QWIPs (Area : $2mm{\times}2mm$) are fabricated by conventional optical lithography and wet etching process and Ni/Ge/Au ohmic contacts were evaporated onto the top and bottom layers. The dark current are measured at different temperatures and the temperature and applied bias dependence of the intersubband photocurrents are studied by using Fourier transform infrared spectrometer (FTIR) system equipped with cryostat. The photovoltaic behavior of the DB-QWIPs can be observed up to 120 K due to the generated built-in electric field caused from the asymmetric heterostructures of the DB-QWIPs. The fabricated DB-QWIPs exhibit spectral photoresponses at wavelengths range from 3 to $7{\mu}m$. Grating structure formed on the window surface of the DB-QWIP will induce the enhancement of optical responses.

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Preparation of Gallium Nitride Powders and Nanowires from a Gallium(III) Nitrate Salt in Flowing Ammonia

  • Jung, Woo-Sik
    • Bulletin of the Korean Chemical Society
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    • v.25 no.1
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    • pp.51-54
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    • 2004
  • Gallium nitride (GaN) powders were prepared by calcining a gallium(III) nitrate salt in flowing ammonia in the temperature ranging from 500 to 1050 $^{\circ}C$. The process of conversion of the salt to GaN was monitored by X-ray diffraction and $^{71}Ga$ MAS (magic-angle spinning) NMR spectroscopy. The salt decomposed to ${\gamma}-Ga_2O_3$ and then converted to GaN without ${\gamma}-{\beta}Ga_2O_3$ phase transition. It is most likely that the conversion of ${\gamma}-Ga_2O_3$ to GaN does not proceed through $Ga_2O$ but stepwise via amorphous gallium oxynitride ($GaO_xN_y$) as intermediates. The GaN nanowires and microcrystals were obtained by calcining the pellet containing a mixture of ${\gamma}-Ga_2O_3$ and carbon in flowing ammonia at 900 $^{\circ}C$ for 15 h. The growth of the nanowire might be explained by the vapor-solid (VS) mechanism in a confined reactor. Room-temperature photoluminescence spectra of as-synthesized GaN powders obtained showed the emission peak at 363 nm.

Study on InGaAs/InGaAsP/InP Quantum-dot Molecules for Quantum Interference devices (양자간섭소자를 위한 InGaAs/InGaAsP/InP 양자점 분자구조 연구)

  • Kim Jin-Soak;Kim Eun-Kyu;Jeong Weon-G.
    • Journal of the Korean Vacuum Society
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    • v.15 no.2
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    • pp.186-193
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    • 2006
  • In this study, we analyzed the electrical and optical properties of metalorganic chemical vapor deposition grown InGaAs/InGaAsP/InP quantum dot(QD) molecules by using photoluminescence and deep-level transient spectroscopy. From these resulte, the energy levels of the large QDs are located at deeper region from the conduction band edge of the barrier than that of the small QDs, The large QDs seem to have the energy states more than two, and these energy levels of the QD molecules are located at 0.35, 0.42, and 0.45 eV from conduction band edge under -4 V reverse bias conditions. The energy levels are closely coupled under low reverse bias, and then decoupled as the bias voltage is increased.

Photoluminescence in Carbon-doped GaAs Epilayers Grown on GaAs (311)A (GaAs (311)A 기판 위에 성장된 탄소 도핑된 GaAs 에피층의 광여기 발광)

  • 조신호
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.15 no.3
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    • pp.208-213
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    • 2002
  • We present the temperature and excitation power density dependence of the photoluminescence from carbon-doped GaAs epilayers grown on GaAs (311)A substrate by atmospheric pressure metalorganic chemical vapor deposition. The measured temperature dependence of the PL peak energy is well expressed by an empirical formula proposed by Varshni. The thermal quenching mechanism of the intensity of 16 K luminescence peak at 1.480 eV is described with the dominant activation energy of 27$\pm$2 meV. The activation energy shows an evidence that the emission band involves the carbon acceptor in the recombination process.

Comparison of Dry Etching of GaAs in Inductively Coupled $BCl_3$ and $BCl_3/Ar$ Plasmas ($BCl_3$$BCl_3/Ar$ 유도결합 플라즈마에 따른 GaAs 건식식각 비교)

  • ;;;;;S.J Pearton
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2003.03a
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    • pp.62-62
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    • 2003
  • 고밀도 유도결합 플라즈마(high density inductively coupled plasma) 식각은 GaAs 이종접합 양극성 트랜지스터(HBTs)와 고속전자 이동도 트랜지스터(HEMTs)와 같은 GaAs 기반 반도체의 정교한 패턴을 형성하는데 더욱 많이 이용되고 있다 본 연구는 고밀도 플라즈마 소스(source)인 평판형(planar) 고밀도 유도결합 플라즈마 식각장치를 이용하여 $BCl_3$$BCl_3/Ar$ 가스에 따른 GaAs 식각결과를 비교 분석하였다. 공정변수는 ICP 소스 파워를 0-500W, RIE 척(chuck) 파워를 0-150W, 공정압력을 0-15 mTorr 이었다. 그리고 가스 유량은 20sccm(standard cubic centimeter per minute)으로 고정시킨 상태에서 Ar 첨가 비율에 따른 GaAs의 식각결과를 관찰하였다. 공정 결과는 식각률(etch rate), GaAs 대 PR의 선택도(selectivity), 표면 거칠기(roughness)와 식각후 표면에 남아 있는 잔류 가스등을 분석하였다. 20 $BCl_3$ 플라즈마를 이용한 GaAs 식각률 보다 Ar이 첨가된 (20-x) $BC1_3/x Ar$ 플라즈마의 식각률이 더 우수하다는 것을 알 수 있었다. 식각률 증가는 Ar 가스의 첨가로 인한 GaAs 반도체와 Ar 플라즈마의 충돌로 나타난 결과로 예측된다. $BCl_3$$BC1_3/Ar$ 플라즈마에 노출된 GaAs 반도체 모두 표면이 평탄하였고 수직 측벽도 또한 우수하였다. 그리고 표면에 잔류하는 성분은 Ga와 As 이외에 $Cl_2$ 계열의 불순물이 거의 발견되지 않아 매우 깨끗함을 확인하였다. 이번 발표에서는 $BCl_3$$BCl_3/Ar$ 플라즈마를 이용한 GaAs의 건식식각 비교에 대해 상세하게 보고 할 것이다.

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Insertion of Carbon Interlayer Into GaN Epitaxial Layer

  • Yu, H.S.;Park, S.H.;Kim, M.H.;Moon, D.Y.;Nanishi, Y.;Yoon, E.
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.148-149
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    • 2012
  • This paper reports doping of carbon atoms in GaN layer, which based on dimethylhydrazine (DMHy) and growth temperature. It is well known that dislocations can act as non-radiative recombination center in light emitting diode (LED). Recently, many researchers have tried to reduce the dislocation density by using various techniques such as lateral epitaxial overgrowth (LEO) [1] and patterned sapphire substrate (PSS) [2], and etc. However, LEO and PSS techniques require additional complicated steps to make masks or patterns on the substrate. Some reports also showed insertion of carbon doped layer may have good effect on crystal quality of GaN layer [3]. Here we report the growth of GaN epitaxial layer by inserting carbon doped GaN layer into GaN epitaxial layer. GaN:C layer growth was performed in metal-organic chemical vapor deposition (MOCVD) reactor, and DMHy was used as a carbon doping source. We elucidated the role of DMHy in various GaN:C growth temperature. When growth temperature of GaN decreases, the concentration of carbon increases. Hence, we also checked the carbon concentration with DMHy depending on growth temperature. Carbon concentration of conventional GaN is $1.15{\times}1016$. Carbon concentration can be achieved up to $4.68{\times}1,018$. GaN epilayer quality measured by XRD rocking curve get better with GaN:C layer insertion. FWHM of (002) was decreased from 245 arcsec to 234 arcsec and FWHM of (102) decreased from 338 arcsec to 302 arcsec. By comparing the quality of GaN:C layer inserted GaN with conventional GaN, we confirmed that GaN:C interlayer can block dislocations.

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Photoluminescence Up-conversion in GaAs/AlGaAs Heterostructures

  • Cheong, Hyeonsik M.
    • Journal of Korean Vacuum Science & Technology
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    • v.6 no.2
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    • pp.58-61
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    • 2002
  • Photoluminescence up-conversion in semiconductor heterostructures is a phenomenon in which luminescence occurs at energies higher than that of the excitation photons. It has been observed in many semiconductor heterostructure systems, including InP/AnALAs, CdTe/CdMgTe, GaAs/ordered-(Al)GalnP, GaAs/AIGaAs, and InAs/GaAs. In this wort, GaAs/AIGaAs heterostructures are used as a model system to study the mechanism of the up-conversion process. This system is ideal for testing different models because the band offsets are quite well documented. Different heterostructures are designed to study the effect of disorder on the up-converted luminescence efficiency. In order to study the roles of different types of carriers, the effect of doping was investigated. It was found that the up-converted luminescence is significantly enhanced by p-type doping of the higher-band-gap material.

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