• 제목/요약/키워드: Short-wavelength

검색결과 407건 처리시간 0.03초

Effect of Si-doping on the luminescence properties of InGaN/GaN green LED with graded short-period superlattice

  • Cho, Il-Wook;Lee, Dong Hyun;Ryu, Mee-Yi;Kim, Jin Soo
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.280.1-280.1
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    • 2016
  • Generally InGaN/GaN green light emitting diode (LED) exhibits the low quantum efficiency (QE) due to the large lattice mismatch between InGaN and GaN. The QE of InGaN-based multiple quantum wells (MQWs) is drastically decreased when an emission wavelength shifts from blue to green wavelength, so called "green gap". The "green gap" has been explained by quantum confined Stark effect (QCSE) caused by a large lattice mismatch. In order to improve the QE of green LED, undoped graded short-period InGaN/GaN superlattice (GSL) and Si-doped GSL (SiGSL) structures below the 5-period InGaN/GaN MQWs were grown on the patterned sapphire substrates. The luminescence properties of InGaN/GaN green LEDs have been investigated by using photoluminescence (PL) and time-resolved PL (TRPL) measurements. The PL intensity of SiGSL sample measured at 10 K shows stronger about 1.3 times compared to that of undoped GSL sample, and the PL peak wavelength at 10 K appears at 532 and 525 nm for SiGSL and undoped GSL, respectively. Furthermore, the PL decay of SiGSL measured at 10 K becomes faster than that of undoped GSL. The faster decay for SiGSL is attributed to the increased wavefunction overlap between electron and hole due to the screening of piezoelectric field by doped carriers. These PL and TRPL results indicate that the QE of InGaN/GaN green LED with GSL structure can be improved by Si-doping.

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라이다 시스템을 이용한 ice-crystal cloud의 광학적 특성 관측 및 복사 전달 모델을 통한 복사강제력 산출 (Measurement of Optical Properties of Ice-crystal Cloud using LIDAR System and Retrieval of Its Radiative Forcing by Radiative Transfer Model)

  • 노영민;신동호;이경화;;김영준
    • 한국대기환경학회지
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    • 제25권5호
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    • pp.392-401
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    • 2009
  • Ice-crystal clouds observation was conducted using a GIST/ADEMRC Multi-wavelength Raman lidar system in order to measure vertical profile and optical depth at Gwangju ($35^{\circ}$10'N, $126^{\circ}$53'E), Korea in December 2002, and March and April 2003. Ice-crystal clouds at high altitude can be distinguished from atmospheric aerosols by high depolarization ratio and high altitude. Ice-crystal clouds were observed at 5~12 km altitudes with a high depolarization ratio from 0.2 to 0.5. Optical depth of ice-crystal clouds had varied from 0.14 to 1.81. The radiative effect of observed ice-crystal cloud on climate system was estimated to be negative net flux in short wavelength (0.25~$4.0{\mu}m$) and positive net flux in short+long wavelength (0.25~$100{\mu}m$) at top of the atmosphere. Net flux by ice-crys tal cloud per unit optical depth was comparable to that of Asian dust.

A Comparative Study of Two Different SnO2:F-coated Glass Substrates for CdTe Solar Cells

  • Cha, Eun Seok;Ko, Young Min;Choi, Yong Woo;Park, Gyu Chan;Ahn, Byung Tae
    • Current Photovoltaic Research
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    • 제5권1호
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    • pp.1-8
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    • 2017
  • Two different fluorine-doped tin oxide (FTO)-coated glass substrates were investigated to find better suitability for CdTe solar cells. Substrate A consisted of FTO (300 nm)/$SiO_2$ (24 nm)/intrinsic $SnO_2$ (30 nm)/borosilicate glass (2.2 mm), and substrate B consisted of FTO (700 nm)/intrinsic $SnO_2$ (30nm)/borosilicate glass (1.8 mm). The overall thickness of the FTO/glass substrates was about 2.5 mm. The total light transmittance of substrate B was much higher than that of substrate A throughout the whole spectral region, even though the thickness of the FTO in substrate B was twice larger than that of the FTO in the substrate A. The short-circuit current greatly increased in substrate B and the external quantum efficiency (EQE) increased over the whole wavelength range. This study shows that the diffuse optical transmittance played a key role in the large EQE value in the blue wavelength region, and the direct transmittance played a key role in the large EQE value in the red wavelength region. The higher transmittance is due to the rough surface generated by the thicker FTO on glass. The conversion efficiency of the CdTe solar cell increased from 12.4 to 15.1% in combination of rough FTO substrate and Cu solution back contact.

비정질 RE-Co 합금막의 자기광학 스펙트럼 (MAGNETO-OPTICAL KERR SPECTRA FOR AMORPHOUS RE-Co ALLOY FILMS)

  • Y. J. Choe;S. Tsunashima;S. Uchiyama
    • 한국자기학회지
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    • 제4권2호
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    • pp.154-159
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    • 1994
  • 비정질 RE-Co(RE=Ce, Nd, Pr, Gd, Tb, Er, Ho) 합금막의 자기광학 스펙트럼(${\lambda}=250~700nm$)을 Y-Co의 그것과 비교하여 RE 부격자에 의한 자기광학효과를 추정하였다. RE에 의한 자기광학효과는 단파장 영역에서 크게 기여하는 것으로 나타났으며, Ce, Pr, Nd 및 Gd은 Co의 자기광학효과에 더해지는 방향으로 일어나고, Tb, Ho 및 Er은 Co와 반대방향으로 일어난다. 자기광학 천이 모델에 의하면, Pr과 Nd은 $4f{\uparrow}->5d{\uparrow}$, Ce과 Gd은 d->p, Tb은 $4f{\downarrow}->5d{\downarrow}$ 또는 $5d{\downarrow}->4f{\downarrow}$ 그리고 Ho과 Er은 $4f{\downarrow}->5d{\downarrow}$ 밴드간 천이에 의한 것으로 각각의 자기광학횬과를 설명할 수 있다.

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양 단면 반사율 조합과 결합 계수 비에 따른 Complex-Coupled DFB 레이저 다이오드의 파워 추출 효율과 발진 파장 분포 (Power extraction efficiency and lasing wavelength distribution of complex-coupled DFB lasers for various facet reflectivity combinations and coupling coefficient ratios)

  • 김상택;김부균
    • 한국광학회지
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    • 제15권2호
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    • pp.149-157
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    • 2004
  • 문턱 전류 이상에서 complex-coupled(CC) DFB 레이저의 여러 가지 |$\chi$L|과 양 단면 반사율 조합에 대하여 파워 추출 효율과 발진 파장 분포를 구하였고 문턱 전류에서의 결과와 비교하였다. 또한 결함 계수 비(CR)와 Ar 단면의 반사율이 파워 추출 효율과 발진 파장 분포에 미치는 영향에 대하여 살펴보았다. 문턱 전류에서 in-phase(IP) CC DFB 레이저와 anti-phase(AP) CC DFB 레이저의 파워 추출 효율에 대하여 도시한 단일 모드 수율은 정확히 일치하였다. 그러나 문턱 전류 이상에서는 IP CC DFB 레이저의 파워 추출에 대하여 도시한 단일 모드 수율은 AP CC DFB 레이저보다 크게 나타났다. IP CC DFB 레이저의 경우 양 단면 반사율 조합이 AR-HR의 경우가 다른 반사율 조합에 비해 단일 모드 수율이 크고 또한 파워 추출 효율이 큼을 알 수 있었다. 본 논문에서 고려한 경우 중에서 |$\chi$L|이 0.8이고 AR-HR인 경우가 문턱 전류 이상에서 단일 모드 수율과 파워 추출 효율이 가장 컸다. 양 단면 반사율 조합이 AR-HR인 경우 CR이 커질수록, AR단면의 반사율이 작아질수록 spatial hole burning 현상이 완화되어 단일 모드 수율과 파워 추출 효율이 커졌다. 양 단면 반사율 조합이 AR-HR인 경우 CC DFB 레이저의 발진 파장은 DFB 금지 대역 내에 넓게 분포하였다. CR이 증가할수록 IP CC DFB 레이저는 장파장 모드에, AP CC DFB 레이저는 단파장 모드에 발진 파장 분포가 증가하였다. |$\chi$L|이 커질수록 발진 파장이 존재하는 파장 폭이 작아 지고 발진 파장 분포가 장파장 쪽으로 이동하였다.

UAV 영상과 ENVI-met 활용 물리적 환경과 열적 환경 비교 (Comparing Physical and Thermal Environments Using UAV Imagery and ENVI-met)

  • 김성현;박경훈;송봉근
    • 한국지리정보학회지
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    • 제26권4호
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    • pp.145-160
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    • 2023
  • 본 연구는 무인항공기(Unmanned Aerial Vehicles, UAV) 기반 물리적 환경인 Normalized Difference Vegetation Index(NDVI), Sky View Factor(SVF)와 ENVI-met 모델링을 활용하여 시간대별 열적 환경을 비교 분석하는 것을 목적으로 수행하였다. 연구 결과 NDVI, SVF는 열적 환경 요소인 Upward short-wavelength(S↑), Downward short-wavelength(S↓), Upward long-wavelength(L↑), Downward long-wavelength(L↓), Land Surface Temperature (LST), Mean Radiant Temperature(Tmrt)와 유의수준 1% 이내에서 모두 상관관계를 보이는 것으로 도출되었다. 특히, NDVI는 S↑와 12시에 최대 -0.52**의 상관관계를 가지는 것으로 분석되었고, L↓와 모든 시간대에서 0.53** 이상의 상관성을 보였다. LST와는 -0.61**(13시)의 상관성을 보여 NDVI는 장파 복사에너지의 관련성이 높은 것으로 판단된다. SVF의 경우 SVF 범위에 따라 장파 복사에너지와의 관련성이 높은 것으로 도출되었다. 본 연구결과는 공간의 열적 쾌적성과 미기후를 평가하기 위한 통합 접근 방식을 제공할 수 있으며, 도시 디자인 및 경관 특성이 보행자의 열 쾌적성 미치는 영향 관계 규명 등에 활용될 수 있을 것으로 판단된다.

Characterization of Wavelength Effect on Photovoltaic Property of Poly-Si Solar Cell Using Photoconductive Atomic Force Microscopy (PC-AFM)

  • Heo, Jinhee
    • Transactions on Electrical and Electronic Materials
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    • 제14권3호
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    • pp.160-163
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    • 2013
  • We investigated the effect of light intensity and wavelength of a solar cell device by using photoconductive atomic force microscopy (PC-AFM). The $POCl_3$ diffusion doping process was used to produce a p-n junction solar cell device based on a Poly-Si wafer and the electrical properties of prepared solar cells were measured using a solar cell simulator system. The measured open circuit voltage ($V_{oc}$) is 0.59 V and the short circuit current ($I_{sc}$) is 48.5 mA. Also, the values of the fill factors and efficiencies of the devices are 0.7% and approximately 13.6%, respectively. In addition, PC-AFM, a recent notable method for nano-scale characterization of photovoltaic elements, was used for direct measurements of photoelectric characteristics in local instead of large areas. The effects of changes in the intensity and wavelength of light shining on the element on the photoelectric characteristics were observed. Results obtained through PC-AFM were compared with the electric/optical characteristics data obtained through a solar simulator. The voltage ($V_{PC-AFM}$) at which the current was 0 A in the I-V characteristic curves increased sharply up to 1.8 $mW/cm^2$, peaking and slowly falling as light intensity increased. Here, $V_{PC-AFM}$ at 1.8 $mW/cm^2$ was 0.29 V, which corresponds to 59% of the average $V_{oc}$ value, as measured with the solar simulator. Also, while light wavelength was increased from 300 nm to 1,100 nm, the external quantum efficiency (EQE) and results from PC-AFM showed similar trends at the macro scale, but returned different results in several sections, indicating the need for detailed analysis and improvement in the future.

중성선 선로 전압강하를 이용한 단락사고 방지용 보호장치 개발 (Development of Prevention Apparatus for Short-Circuit Faults Using the Line Voltage Drop of Neutral Wire)

  • 곽동걸;김진환;이봉섭
    • 전기학회논문지
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    • 제61권12호
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    • pp.1953-1958
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    • 2012
  • The major causes of electrical fire are classified to short circuit fault, overload fault, electric leakage and electric contact failure. The occurrence factor of the fire is electric arc or spark accompanied with such electric faults, specially short circuit faults. Earth Leakage Circuit Breaker (ELB) and Molded_case Circuit Breaker (MCCB), that is, Residual Current Protective Devices (RCDs) used on low voltage distribution lines cut off earth leakage and overload, but the RCD can not cut off electric arc or spark to be a major factor of electrical fire. As the RCDs which are applied in low voltage distribution panel are prescribed to rated breaking time about 30ms(KS C 4613), the RCDs can't perceive to the periodic electric arc or spark of more short wavelength level. To improve such problem, this paper proposes a prevention apparatus using the line voltage drop of neutral wire and some semiconductor switching devices. Some experimental tests of the proposed apparatus confirm the validity of the analytical results.

Nd 치환 RE-TM 막의 자기 및 자기광학적 특성 (Magnetic and Magneto-optical Characteristics for Nd-RE-TM Amorphous Alloy Films)

  • 이정구;최영준;임은식;이세광;김순광
    • 한국자기학회지
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    • 제4권3호
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    • pp.244-248
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    • 1994
  • NdTbFeCo 합금막 및 NdTbFeCo/TbFeCo 이층막에 대한 자기광학 Kerr 회전각(${\theta}_{k}$)의 파장의존성 및 자기적 특성을 조사하였다. FeCo의 조성을 일정하게 유지하고 NdTbFeCo 합금막에서 Tb의 일부를 Nd로 치환한 결과, Nd 조성이 증가할 수록 400 nm의 파장영역에서 ${\theta}_{k}$는 증대되었으나, 보자력과 각형비가 급격히 감소하였다. NdTbFeCo 막이 단파장에서 큰 ${\theta}_{k}$를 나타냄에도 불구하고 보자력이 작아 단파장용 광자기기록 매체로서 응용가능성이 희박할 것으로 생각되어, 보자력이 큰 TbFeCo 막과 교환결합 이층막을 제작하였다. 제작된 시료중 $Nd_{16.9}Tb_{15.2}Fe_{50.4}Co_{17.5}(150\;{\AA})/Tb_{21.1}Fe_{65.0}Co_{13.9}(300\;{\AA})$ 교환결합 이층막이 6.0 KOe의 보자력과 500 nm에서 $0.32^{\circ}$${\theta}_{k}$를 나타내었다.

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Multi-wavelength Raman LIDAR for Use in Determining the Microphysical, Optical, and Radiative Properties of Mixed Aerosols

  • Lee, Kwon-Ho;Noh, Young Min
    • Asian Journal of Atmospheric Environment
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    • 제9권1호
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    • pp.91-99
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    • 2015
  • The Multi-wavelength Raman LIDAR (MRL) system was developed to enable a better understanding of the complex properties of aerosols in the atmosphere. In this study, the microphysical, optical, and radiative properties of mixed aerosols were retrieved using the discrete aerosol observation products from the MRL. The dust mixing ratio, which is the proportion of dust particles to the total mixed, was derived using the particle depolarization ratio. It was employed in the retrieval of backscattering and extinction coefficient profiles for dust and non-dust particles. The vertical profiles of aerosol optical properties were then used as input parameters in the inversion algorithm for the retrieval of microphysical parameters including the effective radius, refractive index, and the single scattering albedo (SSA). Those products were successfully applied to an analysis of radiative flux using a radiative transfer model. The relationship between the MRL derived extinction and aerosol radiative forcing (ARF) in short-wavelength was assessed over Gwangju, Korea. The results clearly demonstrate that the MRL-derived extinction profiles are a good surrogate for use in the estimation of optical, microphysical, and radiative properties of aerosols. It is considered that the analytical results shown in this study can be used to provide a better understanding of air quality and the variation of local radiative effects due to aerosols.