• Title/Summary/Keyword: Four-Wave Mixing(FWM)

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Measurement of temperature dependence of the zero dispersion wavelength using Four-Wave mixing in DSF (4광파혼합을 이용한 온도에 따른 분산천이광섬유(DSF)의 영분산파장 변화 측정)

  • 김상혁;김동환;조재철;김선호;김상국;최상삼
    • Korean Journal of Optics and Photonics
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    • v.9 no.2
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    • pp.123-126
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    • 1998
  • We derived an equation showing the temperature dependence of the zero-dispersion wavelength and measured the temperature dependence of the zero dispersion wavelength using four-wave mixing in dispersion shifted fibers in the range of $22^{\circ}C-59^{\circ}C$ From the experimental results, we found that the zero-dispersion wavelength is increased as the temperature around DSF increases and its temperature dependence is 0.032 nm/$^{\circ}C$. Also, the calculated behavior of FWM efficiency coincided with the experimental result.

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Technological Trend of Optical Frequency Comb Generator (광 주파수 빗 발생기의 기술 동향)

  • Park, Jaegyu;Song, Minje;Han, Sang-Pil;Kim, Sungil;Song, Minhyup
    • Electronics and Telecommunications Trends
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    • v.34 no.5
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    • pp.91-98
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    • 2019
  • Optical frequency comb generators have been investigated as a signal source capable of generating highly stabilized ultrafast pulse lasers. The precise control of the optical frequency comb spacing by RF clock signals has led to a revolutionary paradigm shift in the precise measurement of time and frequency. Optical frequency combs also have advantages such as stable frequency spacing, stable number of lines, and robustness. Owing to these characteristics, optical frequency combs have been applied to the fields of high precision optical clock, communication, spectroscopy, waveform generation, and astronomy. In this article, we introduce the properties (i.e., generation methods, advantages, and so on) of various optical frequency combs, and discuss the expected future technological trends and applications.