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Effective generation of optical quadruple frequency millimeter-wave based on fiber laser using injection rational harmonic mode-locked technique

Effective generation of optical quadruple frequency millimeter-wave based on fiber laser using injection rational harmonic mode-locked technique
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摘要 A method to generate the optical quadruple frequency millimeter-wave with high power efficiency is pro- posed and demonstrated based on the combination of the injection 2nd-order rational harmonic mode- locked fiber ring laser technique and the fiber grating notch filter. In this approach, the fiber Bragg grating notch filter is inserted into the laser cavity to prevent the undesired optical carrier, so that the pump power can be converted to 2nd-order harmonic wave more efficiently. In our experiment, the power efficiency of optical quadruple frequency millimeter-wave (40 GHz) generation is ten folds of that of our previous method based only on the rational harmonic mode-locked technique. A method to generate the optical quadruple frequency millimeter-wave with high power efficiency is pro- posed and demonstrated based on the combination of the injection 2nd-order rational harmonic mode- locked fiber ring laser technique and the fiber grating notch filter. In this approach, the fiber Bragg grating notch filter is inserted into the laser cavity to prevent the undesired optical carrier, so that the pump power can be converted to 2nd-order harmonic wave more efficiently. In our experiment, the power efficiency of optical quadruple frequency millimeter-wave (40 GHz) generation is ten folds of that of our previous method based only on the rational harmonic mode-locked technique.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2009年第7期605-607,共3页 中国光学快报(英文版)
基金 supported by the National "973" Program of China under Grant No. 2006CB302806
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  • 1A. J. Seeds and K. J. Williams, J. Lightwave Technol 24, 4628 (2006).
  • 2Q. Ye, R. Qu, and Z. Fang, Chin. Opt. Lett. 5, 8 (2007).
  • 3L. A. Johansson and A. J. Seeds, J. Lightwave Technol. 21, 511 (2003).
  • 4K.-H. Lee, W.-Y. Choi, Y. A. Leem, and K. H. Park, IEEE Photon. Technol. Lett. 19, 161 (2007).
  • 5G. Qi, J. Yao, J. Seregelyi, S. Paquet, and C. Belisle, IEEE Transactions on Microwave Theory and Techniques 53, 3090 (2005).
  • 6K. K. Gupta, N. Onodera, M. Hyodo, M. Watanabe, and J. Ravikumar, J. Lightwave Technol. 22, 1935 (2004).
  • 7Z. Deng and J. Yao, IEEE Transactions on Microwave Theory and Techniques 54, 763 (2006).
  • 8F. Huang, X. Feng, and X. Liu, Chin. Opt. Lett. 6, 588 (2008).
  • 9J. Dorring, L. Yan, D. A. Satorius, and Y. J. Chen, IEEE Photon. Technol. Lett. 14, 1497 (2002).

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