• Title/Summary/Keyword: semiconductor optical amplifier

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Structural dependence of an optical gain in a traveling-wave semiconductor optical amplifier (진행파형 반도체 광증폭기에서 이득특성의 활성층 구조 의존성)

  • 장세윤;심종인;이정석;김호인;윤인국;김승우;신현철;어영선
    • Proceedings of the Optical Society of Korea Conference
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    • 2003.07a
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    • pp.222-223
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    • 2003
  • The optical gain characteristics of 1550nm traveling-wave semiconductor optical amplifiers are analyzed experimentally and theoretically. The result shows that there is an optimum active layer thickness for high saturation output power.

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Noise Suppression of Spectrum-Sliced WDM-PON Light Sources Using FP-LD

  • Lee, Woo-Ram;Cho, Seung-Hyun;Park, Jae-Dong;Kim, Bong-Kyu;Kim, Byoung-Whi
    • ETRI Journal
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    • v.27 no.3
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    • pp.334-336
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    • 2005
  • We improved the performance of the spectrum-sliced light source for wavelength-division-multiplexed passive optical networks by employing a Fabry-Perot laser diode(FP-LD). We found that the FP-LDs can suppress the intensity noise as significantly as using a gain-saturated semiconductor optical amplifier. The transmission characteristics were measured and analyzed in both conditions with and without employing an FP-LD.

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10 GHz Phase look loop using a four-wave-mixing signal in semiconductor optical amplifier (반도체 광증폭기에서 발생된 4광파 혼합 신호를 이용한 10GHz 위상 동기 루프)

  • 김동환;김상혁;조재철;최상삼
    • Korean Journal of Optics and Photonics
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    • v.10 no.6
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    • pp.507-511
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    • 1999
  • A 10 GHz timing extracted signal which is phase-locked to a 10 Gbit/s mode-locked optical fiber laser pulse train is obtained using a tour-wave-mixing signal in semiconductor optical amplifier. The phase-locked loop wm, demonstrated ~Llccessful1y over 8 hours and found to have the lock-in frequency range of 30 KHz. 0 KHz.

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Time-Domain Modeling of Wavelength Conversion in Semiconductor Optical Amplifier Directional Coupler (반도체 광증폭기로 형성된 방향성결합기에서 파장 변환에 대한 시영역 모델링)

  • 정호연;정영철
    • Proceedings of the Optical Society of Korea Conference
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    • 2000.08a
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    • pp.24-25
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    • 2000
  • 파장변환 소자는 최근에 급격히 발전하는 광네트웍을 구축하기 위하여 필수적인 소자로서 여러 가지 형태에 대한 연구개발이 진행되고 있다. 그중에서도, 최근에는 반도체 광증폭기로 형성된 방향성 결합기구조(semiconductor optical amplifier directional coupler)에서의 상호 이득 포화(XPM : cross-phase modulation)에 의한 파장변환에 대한 개념이 제안되고 가능성이 실험적으로 입증된 바 있다. 이런 구조의 파장변환 소자는 입력 광신호의 파워가 작을때는 위상 정합이 되어 반도체 광증폭기의 광모드가 완전히 결합되어 cross state로 변환된 파장의 광파워가 많이 출력되고, 신호 입력 파워가 증가함에 따라 결합이 감소하게 되어 Cross state에서의 출력 파워는 감소하게 된다. 이와 같은 소자는 입력 신호광과 변환된 신호광이 역방향으로 진행하는 경우 광필터가 필요없이 파장변환이 가능하고, 변환 후의 소광비가 향상되기 때문에 향후 다양한 형태로 응용될 가능성이 있으며, 적정 설계 및 성능 예측을 위해서는 시영역에서 모델링할 수 있는 방법론을 구축하는 것이 필요하다. 본 논문에서는 연산자 분리 방법$^{(1)}$ 을 적용하여 상술한 파장변환기를 해석하기에 적당하도록 시영역 동적 모델을 구현하고, 파장변환 특성을 여러 가지 면에서 분석하여 보았다. (중략)

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An All-Optical NOR Logic Device using a Semiconductor Optical Amplifier and an External Modulation Technique (반도체 광증폭기와 외부변조 기법을 이용한 전광 NOR 논리소자)

  • Byun, Young-Tae;Kim, Sang-Hyuck;Lee, Seok;Kim, Jae-Hun;Woo, Deok-Ha;Kim, Sun-Ho
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2000.04a
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    • pp.197-200
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    • 2000
  • All-optical NOR logic device was realized by use of two pump signals with a single wavelength and a semiconductor optical amplifier(SOA). Specially, Mach-Zehnder(MZ) modulator was used for an external modulation of the pump signals. To obtain the sufficient gain saturation of the SOA, pump signals are amplified by an Er-doped fiber amplifier(EDFA) at the input of the SOA. Pump and probe signals are obtained from a DFB laser diode(${\lambda}_p$=1554 nm) and a tunable laser diode(${\lambda}_s$=1535 nm), respectively. The operation characteristics of the NOR logic device are successfully measured and demonstrated at the modulation frequency of 4.83 MHz.

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Linearization of DFB LD by using Cross Gain Modulation of Reflective SOA in Radio-over-Fiber Link

  • Hong, Moon-Ki;Han, Sang-Kook;Lee, Sang-Hoon
    • Journal of the Optical Society of Korea
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    • v.11 no.4
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    • pp.158-161
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    • 2007
  • We proposed a novel linearization technique for a DFB LD in the RoF link. The proposed scheme is based on the cross gain modulation(XGM) effect of a reflective semiconductor optical amplifier(RSOA) with light injection. We experimentally demonstrated and evaluated the enhanced CIR performance using the proposed linearization scheme.

A 10-Gbit/s Limiting Amplifier Using AlGaAs/GaAs HBTs

  • Park, Sung-Ho;Lee, Tae-Woo;Kim, Yeong-Seuk;Kim, Il-Ho;Park, Moon-Pyung
    • Journal of Electrical Engineering and information Science
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    • v.2 no.6
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    • pp.197-201
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    • 1997
  • To realize 10-Gbit/s optical transmission systems, we designed and fabricated a limiting amplifier with extremely high operation frequencies over 10-GHz using AlGaAs/GaAs heterojunction bipolar transistors (HBTs), and investigated their performances. Circuit design and simulation were performed using SPICE and LABRA. A discrete AlGaAs/GaAs HBT with the emitter area of 1.5${\times}$10$\mu\textrm{m}$$^2$, used for the circuit fabrication, exhibited the cutoff frequency of 63GHz and maximum oscillation frequency of 50GHz. After fabrication of MMICs, we observed the very wide bandwidth of DC∼15GHz for a limiting amplifier from the on-wafer measurement. Ceramic-packaged limiting amplifier showed the excellent eye opening, the output voltage swing of 750mV\ulcorner, and the rise/fall time of 40ps, measured at the data rates of 10-Gbit/s.

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All-optical Data Extraction Based on Optical Logic Gates (반도체 광 증폭기를 이용한 전광 데이터 추출)

  • Lee, Ji Sok;Jung, Mi;Lee, Hyuk Jae;Lee, Taek Jin;Jhon, Young Min;Lee, Seok;Woo, Deok Ha;Lee, Ju Han;Kim, Jae Hun
    • Korean Journal of Optics and Photonics
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    • v.23 no.4
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    • pp.143-146
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    • 2012
  • All-optical data extraction, one of the key technologies for all-optical computing and optical communication to perform add-drop, packet switching, and data reset, etc., is experimentally demonstrated by using cross-gain modulation (XGM) of semiconductor optical amplifiers (SOAs). Also, all-optical data extraction based on numerical simulation is performed by using the VPI simulation tool. In this paper, the suggested optical system based on SOAs shows the potential for high speed, and highly integrable and low power optical data computing.