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      KCI등재 SCI SCIE SCOPUS

      Electronic Feedback System for Stabilization of Fiber Ring Resonator

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      https://www.riss.kr/link?id=A103381030

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      다국어 초록 (Multilingual Abstract)

      We propose a simple technique to stabilize the optical output intensity of a fiber ring resonator. The electronic feedback circuit system, which consists of two voltage control oscillators, a phase comparator, and a low pass filter, is applied to the ...

      We propose a simple technique to stabilize the optical output intensity of a fiber ring resonator. The electronic feedback circuit system, which consists of two voltage control oscillators, a phase comparator, and a low pass filter, is applied to the fiber ring resonator in order to compensate the optical phase shift in the ring loop. The reference electrical signal determines the operating condition of the fiber ring resonator for the desired optical output signal. The experimental results within the operating range agree well with the analytical results. The simulated performance of the proposed model is also compared with that of other existing models and shows significant improvement over them.

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      참고문헌 (Reference)

      1 B. Liu, "Wide Tunable Double Ring Resonator Coupled Lasers" 14 (14): 600-602, 2002

      2 H.C. Lefevre, "Single-Mode Fiber Fractional Wave Devices and Polarization Controllers" 16 (16): 778-780, 1980

      3 K. Fritsch, "Simple Circuit for Feedback Stabilization of a Single-Mode Optical Fiber Interferometer" 52 (52): 996-1000, 1981

      4 L.F. Stokes, "Sensitive All-Single-Mode-Fiber Resonant Ring Interferometer" LT-1 : 110-115, 1983

      5 C. Vazquesz, "Sagnac Loop in Ring Resonators for Tunable Optical Filters" 23 (23): 2555-2567, 2005

      6 G.D. Kim, "Photonic Microwave Reconfigurable Filter Based on a Tunable Polymeric Ring Resonator" 278 (278): 303-306, 2007

      7 G.C. Hsieh, "Phase-Locked Loop Techniques: A Survey" 43 (43): 609-615, 1996

      8 B. Liu, "Passive Microring-Resonator-Coupled Lasers" 79 (79): 3561-3563, 2001

      9 I.A. Goncharenko, "Optical Broadband Analog-Digital Conversion on the Base of Microring Resonator" 257 (257): 54-61, 2006

      10 H.W. Ott, "Noise Reduction Techniques in Electronic System" John Wiley & Sons 1989

      1 B. Liu, "Wide Tunable Double Ring Resonator Coupled Lasers" 14 (14): 600-602, 2002

      2 H.C. Lefevre, "Single-Mode Fiber Fractional Wave Devices and Polarization Controllers" 16 (16): 778-780, 1980

      3 K. Fritsch, "Simple Circuit for Feedback Stabilization of a Single-Mode Optical Fiber Interferometer" 52 (52): 996-1000, 1981

      4 L.F. Stokes, "Sensitive All-Single-Mode-Fiber Resonant Ring Interferometer" LT-1 : 110-115, 1983

      5 C. Vazquesz, "Sagnac Loop in Ring Resonators for Tunable Optical Filters" 23 (23): 2555-2567, 2005

      6 G.D. Kim, "Photonic Microwave Reconfigurable Filter Based on a Tunable Polymeric Ring Resonator" 278 (278): 303-306, 2007

      7 G.C. Hsieh, "Phase-Locked Loop Techniques: A Survey" 43 (43): 609-615, 1996

      8 B. Liu, "Passive Microring-Resonator-Coupled Lasers" 79 (79): 3561-3563, 2001

      9 I.A. Goncharenko, "Optical Broadband Analog-Digital Conversion on the Base of Microring Resonator" 257 (257): 54-61, 2006

      10 H.W. Ott, "Noise Reduction Techniques in Electronic System" John Wiley & Sons 1989

      11 F. Reynaud, "Linear Optical Path Modulation with lambda/200 Accuracy Using a Fiber Stretcher" 29 (29): 1718-1719, 1993

      12 A. Rostami, "Full-Optical Realization of Tunable Low Pass, High Pass, and Band Pass Optical Filters Using Ring Resonators" 240 (240): 133-151, 2004

      13 A. Rostami, "Full Optical Analog to Digital (A/D) Converter Based on Kerr-like Nonlinear Ring Resonator" 228 (228): 39-48, 2003

      14 S. Coen, "Experimental Investigation of the Dynamics of a Stabilized Nonlinear Fiber Ring Resonator" 15 (15): 2283-2293, 1998

      15 D.A. Jackson, "Elimination of Drift in a Single-Mode Optical Fiber Interferometer Using a Piezoelectrically Stretched Coiled Fiber" 19 (19): 2926-2929, 1980

      16 S. Sang-Ngern, "Electronic Feedback Circuit for Stabilization of Fiber Ring Resonator Output Light" WeOE-O2.1-, 2007

      17 A. Roeksabutr, "Electrode Effect of an Optical Fiber Acoustooptic Resonator for Microwave Optoelectronics Frequency Decoder" 209-211, 1998

      18 A. Roeksabutr, "Design of High-Frequency ZnO-Coated Optical Fiber Acoustooptic Phase Modulators" 16 (16): 1203-1211, 1998

      19 C. Vazquesz, "Demultiplexers for Ultranarrow Channel Spacing Based on Mach-Zehnders and Ring Resonator" 43 (43): 2080-2086, 2004

      20 S. Sang-Ngern, "DWDM Demultiplexer Using Compound Optical Ring Resonator with Fiber Bragg Grating" 1907-1910, 2006

      21 S. Coen, "Continuous-Wave Ultrahigh-Repetition-Rate Pulse-Train Generation through Modulational Instability in a Passive Fiber Cavity" 26 (26): 39-41, 2001

      22 J.G. Proakis, "Communication Systems Engineering" Prentice Hall 2002

      23 A. Roeksabutr, "Broad-Band Frequency Response of a ZnO-Coated Fiber Acoustooptic Phase Modulator" 9 (9): 613-615, 1997

      24 M.E. Van Valkenburg, "Analog Filter Design" CBS Publishing 1982

      25 L.F. Stokes, "All-Single-Mode Fiber Resonator" 7 (7): 288-290, 1982

      26 A. Roeksabutr, "Acousto-Optic Frequency Decoder and Its Applications" 616-618, 2007

      27 S. Jirakikul, "25 GHz DWDM Demultiplexer Using Ring Resonator with MZI in the Loop" 889-892, 2003

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2005-09-27 학술지등록 한글명 : ETRI Journal
      외국어명 : ETRI Journal
      KCI등재
      2003-01-01 평가 SCI 등재 (신규평가) KCI등재
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.78 0.28 0.57
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.47 0.42 0.4 0.06
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