• Title/Summary/Keyword: p-AlGaN

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InAs 양자점 크기에 따른 태양전지의 광학적 특성

  • Han, Im-Sik;Lee, Sang-Jo;Son, Chang-Won;Ha, Jae-Du;Kim, Jong-Su;Kim, Yeong-Ho;Kim, Seong-Jun;Lee, Sang-Jun;No, Sam-Gyu;Park, Dong-U;Kim, Jin-Su;Im, Jae-Yeong;Byeon, Ji-Su
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.164-164
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    • 2011
  • 본 연구에서는 InAs 양자점 태양전지의 활성영역에 크기가 다른 양자점을 삽입하여 그 광학적 특성변화를 photoreflectance (PR)와 photoluminescence (PL)를 이용하여 연구하였다. 본 연구에 사용된 InAs 양자점 태양전지 구조는 n+-GaAs (100) 기판 위에 n+-GaAs buffer를 300 nm 성장 후 활성영역에 InAs 양자점과 40 nm 의 n-GaAs spacer를 이용하여 8층의 양자점을 삽입하였다. 그 위에 n-GaAs $1.14{\mu}m$와 p+-GaAs $0.6{\mu}m$, p+-AlGaAs window를 50 nm 성장하고 ohmic contact을 위하여 p+-GaAs 10 nm 성장하였다. 활성영역에 사용된 InAs 양자점의 크기는 InAs 조사량을 1.7 ML~3.0 ML까지 변화시키며 조절하였다. 양자점 태양전지의 활성영역에 삽입한 양자점의 크기에 따른 photoreflectance 측정에서 InAs 조사량이 0~2 ML 사이에서는 Franz-Keldysh oscillation (FKO)의 주기가 짧아지고 2.5 ML 이상에서는 일정한 값 가짐을 보였다. 이는 양자점의 크기가 커질수록 내부 응력에 의한 전기장의 변화에 의한 것으로 사료된다. 아울러 InAs 양자점 태양전지의 photoluminescence 측정 결과 상온에서 1.35 eV 근처에 발광이 관측되었으며 InAs 조사량이 증가할수록 발광중심 낮은 에너지쪽으로 이동함을 보였으며 태양전지 효율은 2.0 ML 인 경우 최고치를 나타내었다. InAs 조사량을 2.0 ML 이상 증가 시킨 경우는 효율이 점진적으로 감소하였다.

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A New Dicing Method for Semiconductor Wafer (반도체 웨이퍼를 위한 새로운 다이싱 방법)

  • Cha, Young-Youp;Choi, Bum-Sick
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.27 no.8
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    • pp.1309-1316
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    • 2003
  • The general dicing process cuts a semiconductor wafer to lengthwise and crosswise direction by using a rotating circular diamond blade. But products with inferior quality are produced under the influence of several parameters in dicing process such as blade, wafer, cutting water and cutting conditions. Moreover we can not apply this dicing method to GaN wafer, because the GaN wafer is harder than the other wafer such as SiO2, GaAs, GaAsP, and AlGaAs. In order to overcome this problem, development of a new dicing process and determination of dicing parameters are necessary. This paper describes a new wafer dicing method using fixed diamond scriber and precision servo mechanism and determination of several parameters - scribing depth, scribing force, scriber inclined angle, scribing speed, and factor for scriber replacement - for a new dicing machine using scriber.

The Parameter Determination of a Scribing Machine for Semiconductor Wafer (반도체 웨이퍼용 스크라이빙 머신의 파라메터 결정)

  • 차영엽;최범식
    • Journal of the Korean Society for Precision Engineering
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    • v.20 no.2
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    • pp.218-225
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    • 2003
  • The general dicing process cuts a semiconductor wafer to lengthwise and crosswise direction by using a rotating circular diamond blade. However, inferior goods may be made under the influence of several parameters in dicing process such as blade, wafer, cutting water and cutting conditions. Moreover we can not apply this dicing method to a GaN wafer, because the GaN wafer is harder than other wafers such as SiO$_2$, GaAs, GaAsP, and AlGaAs. In order to overcome this problem, development of a new dicing process and determination of dicing parameters are necessary. This paper describes determination of several parameters - scribing depth, scribing force, scriber inclined angle, scribing speed, and factor for scriber replacement - for a new dicing machine using a scriber.

Increasing Effect of Laser Stimulation to Koryo-Hand Acupuncture Points on Experimental Pressure Threshold (고려수지기맥 레이저 자극의 압통 역치상승 효과)

  • Park, Boe-Kyung;Yi, Jong-Eun;Song, Byung-Chul;Yi, Jin-Bock;Ahn, Duck-Hyun
    • Physical Therapy Korea
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    • v.5 no.2
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    • pp.1-14
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    • 1998
  • This study was conducted to examine the increasing effects of Ga-As-Al laser Koryo-hand acupuncture on experimental pressure threshold. Forty healthy subjects (female=20. male=20) aged 21 to 30 years were randomly assigned to two treatment groups with same ratio in sex. The subjects in the experimental group (n=20) received Ga-As-Al laser stimulation, and those in the control group (n=20) received sham stimulation on appropriate Koryo-hand acupuncture points M10 on the left hand which is reflex point of upper trapezius portion. Experimental pressure threshold at the contralateral upper trapezius was determined with a pressure algometer and Galvanic Skin Response (GSR) before and after treatment. The change of pressure threshold between pretreatment and posttreatment in the experimental group was greater than that in the control group (p<0.05). The result indicates that Ga-As-Al laser Koryo-hand acupuncture increases experimental pressure threshold and suggests that it is an effective noninvasive pain management technique.

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GaN를 기반으로 하는 고분자 MDMO-PPV의 두께 변화와 온도에 따른 Photovoltaics의 효율 측정

  • Lee, Sang-Deok;Lee, Chan-Mi;Gwon, Dong-O;Sin, Min-Jeong;Lee, Sam-Nyeong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.08a
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    • pp.305-305
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    • 2013
  • 태양전지는 무기태양전지와 유기태양전지 등이 연구 되고 있는데 [1] 그 중 유기물질의 장점(높은 수율, solution phase processing, 저비용으로 전력 생산)과 무기재료의 장점(높은 전자 이동도, 넓은 흡수 범위, 우수한 환경 및 열 안정성)을 융합함으로써 장기적 구조안정성의 확보와 광전변환의 고 효율화를 동시에 달성하기 위한 유기무기 하이브리드 태양전지가 최근 큰 관심을 끌고 있다[2]. 본 연구에서는 hybrid photovoltaics에 유기물 MDMO-PPV와 전도성 고분자 PEDOT:PSS를 무기물 GaN 위에 spin coating 하여 두께에 다른 효율을 측정하였다. 유기물 MDMO-PPV는 p-형으로 클로로벤젠, 톨루엔과 같은 유기 용매에 잘 녹으며 HOMO 5.33eV, LUMO 2.97eV, energy band gap 2.4eV이며 99.5%의 순도 물질을 사용하였다. 또한 정공 수송층(hole transport layer, HTL)으로 PEDOT:PSS를 사용하였으며, HOMO 5.0eV, LUMO 3.6eV, energy band gap 1.4eV를 가지며 증류수나 에탄올과 같은 수용성 용매에 잘 녹는 특성을 가지고 있다. 무기물은 III-V 족 물질 n-GaN(002)을 사용하였고 valence band energy 1.9eV, conduction band energy 6.3eV, energy band gap 3.4eV, 높은 전자 이동도와 높은 포화 속도, 광전자 소자에 유리한 광 전기적 특성을 가지고 있다. 기판으로는 GaN와 격자 부정합도와 열팽창계수 부정합도가 큰 Sapphire (Al2O3) 이종 기판을 사용하였다. 전극으로 Au를 사용하였으며 E-beam증착하였다. Reflector로서 Al를 thermal evaporator로 증착하였다 [3]. 실험 과정은 두께에 따른 효율을 알아보기 위해 MDMO-PPV를 900~1,500 rpm으로 spin coating 하였고, 열처리에 따른 효율을 알아보기 위해 열처리 온도 조건을 $110{\sim}170^{\circ}C$의 변화를 주었다. FE-SEM으로 표면과 단면을 관찰하였으며 J-V 특성을 알아보기 위해 각 샘플마다 solar simulator를 사용하여 측정하였고 그 결과를 논의하였다.

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Improvement of the LED Performance Using Mg Delta-doing in p Type Cladding Layer for Sensor Application (p 형 반도체 층의 Mg 델타 도핑을 이용한 센서 광원 용 LED의 성능 향상)

  • Kim, Yukyung;Lee, Seungseop;Jeon, Juho;Kim, Mankyung;Jang, Soohwan
    • Journal of Sensor Science and Technology
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    • v.31 no.1
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    • pp.31-35
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    • 2022
  • The efficacy improvement of the light emitting diode (LED) was studied for the realization of small-size, low power consumption, and highly sensitive bio-sensor instrument. The performance of the LED with Mg delta-doping at the interface of AlGaN/GaN super-lattice in p type cladding layer was simulated. The device with Mg delta-doping showed improved current, radiative recombination rate, electroluminescence, and light output power compared to the conventional LED structure. Under the bias condition of 5 V, the improved device exhibited 20.8% increase in the light output power. This is attributed to the increment of hole concentration from stable ionization of Mg in p type cladding layer. This result is expected to be used for the miniaturization, power saving, and sensitivity improvement of the bio-sensor system.

Fabrication and Characteristics of Reflection Type InGaAs MQW SEED (반사형 InGaAs MQW SEED 소자의 제작 및 특성)

  • Kim, Sung-Woo;Park, Sung-Soo;Park, Jong-Cheol;Kim, Taek-Seung;Kwon, O-Dae;Kang, Bong-Koo
    • Proceedings of the KIEE Conference
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    • 1994.07b
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    • pp.1216-1219
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    • 1994
  • A reflection type SEED from LP-MOCVD grown InGaAs/GaAs ESQW structures, with 5% In fraction, has been fabricated and its basic characteristics were investigated. Its intrinsic region consists of 50 pairs of alternating $100{\AA}$ $In_{0.05}Ga_{0.95}As$ barrier and $100{\AA}$ GaAs layers. And a multilayer reflector stack of $Al_{0.12}Ga_{0.88}As(641{\AA})-/AlAs(774{\AA})$ was vertically integrated below the p-i-n structures. The device processing includes the mesa etching, insulator deposition, indium metallization, and thermal alloy for Ohmic contact. Photocurrent spectrum measurement showed the exciton absorption peak at 905nm and availability as a optical switching device. This device showed a contrast ratio of 2:1 by the reflectance spectrum measurement.

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A Novel Multi-Quantum Well Injection Mode Diode And Its Application for the Implementation of Pulse-Mode Neural Circuits (다중 양자우물 주사형 다이오드와 펄스-모드 신경회로망 구현을 위한 그 응용)

  • Song Chung Kun
    • Journal of the Korean Institute of Telematics and Electronics A
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    • v.31A no.8
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    • pp.62-71
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    • 1994
  • A novel semiconductor device is proposed to be used as a processing element for the implementation of pulse-mode neural networks which consists of alternating n' GaAs quantum wells and undoped AlGaAs barriers sandwitched between n' GaAs cathode and P' GaAs anode and in simple circuit in conjunction with a parallel capacitive and resistive load the trigger circuit generates neuron-like pulse train output mimicking the function of axon hillock of biological neuron. It showed the sigmoidal relationship between the frequency of the pulse-train and the applied input DC voltage. In conjunction with MQWIMD the various neural circuits are proposed especially a neural chip monolithically integrated with photodetectors in order to perfrom the pattern recognition.

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Ga-ZnO film using electrochemical method (전기화학적 방법을 이용한 Ga-ZnO film)

  • Sim, Won-Hyeon;Kim, Yeong-Tae;Park, Mi-Yeong;Im, Dong-Chan;Lee, Gyu-Hwan;Jeong, Yong-Su
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2009.10a
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    • pp.151-151
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    • 2009
  • ZnO 박막은 큰 밴드 갭 및 가시광 영역에서 높은 광투과성을 가지며, 제조조건에 따라 비저항의 범위가 폭넓게 변화하므로 태양전지, 평판 디스플레이의 투명 전극뿐만 아니라 음향공전기, 바리스터 등에 이용되고 있다. ZnO 박막의 전도성을 향상시키기 위해서 일반적으로 Al, Ga, Ti, In, B, H(n-type), 등과 N, As(p-type)의 도펀트를 사용한다. 본 연구에서는 전기화학적인 방법을 사용하여 ITO/glass위에 ZnO film에 농도에 따른 Ga을 doping 하여 전기전도성 향상과 밴드갭을 넓힘으로서 전자의 recombination을 방지하여 유기태양전지의 효율을 높이는데 목적을 두었다.

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Simulation Design of MHEMT Power Devices with High Breakdown Voltages (고항복전압 MHEMT 전력소자 설계)

  • Son, Myung-Sik
    • Journal of the Korean Vacuum Society
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    • v.22 no.6
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    • pp.335-340
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    • 2013
  • This paper is for the simulation design to enhance the breakdown voltage of MHEMTs with an InP-etchstop layer. Gate-recess and channel structures has been simulated and analyzed for the breakdown of the MHEMT devices. The fully removed recess structure at the drain side of MHEMT shows that the breakdown voltage enhances from 2 V to almost 4 V as the saturation current at gate voltage of 0 V is reduced from 90 mA to 60 mA at drain voltage of 2 V. This is because the electron-captured negatively fixed charges at the drain-side interface between the InAlAs barrier and the $Si_3N_4$ passivation layers deplete the InGaAs channel layer more and thus decreases the electron current passing the channel layer and thus the impact ionization in the channel become smaller. In addition, the replaced InGaAs/InP composite channel with the same thickness in the same asymmetrically recessed structure increases the breakdown voltage to 5 V due to the smaller impact ionization and mobility of the InP layer at high drain voltage.