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Compared to the large slope of the gain spectrum, in this paper, the characteristics of the slow and fast light on the band-edge of gain spectrum of the narrow-band fiber-optic parametric amplification (FOPA) are analyzed. Firstly, we derive the analytical solution of the signal delay under the condition of small-signal gain. Secondly, the characteristics of 10 Gb/s pseudo-random binary sequence pulse signal delay are investigated experimentally under the condition of low pump power (<1 W). Finally, the factors that influence the signal delay, such as pump power, dispersion, nonlinear coefficient, etc. are analyzed. The results obtained in this paper provide a detailed theoretical reference for designing slow and fast delay line in band-edge of gain spectrum of FOPA.
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Keywords:
- slow light /
- fiber-optic parametric amplification /
- pulse signal
[1] Khurgin J B, Tucker R S 2009 Slow Light: Science and Applications (New York: CRC Press) p293
[2] Zhu Z M, Gauthier D J, Boyd R W 2007 Science 318 1748
[3] Firstenberg O, Shuker M, Davidson N, Ron A 2009 Phys. Rev. Lett. 102 043601
[4] Camacho R M, Broadbent C J, Ali-Khan I, Howell J C 2007 Phys. Rev. Lett. 98 043902
[5] Alic N, Windmiller J R, Coles J B, Radic S 2008 IEEE Sel. Topics Quantum Electron. 14 681
[6] Okawachi Y, Bigelow M S, Sharping J E, Zhu Z M, Schweinsberg A, Gauthier D J, Boyd R W, Gaeta A L 2005 Phys. Rev. Lett. 94 153902
[7] Sharping J E, Okawachi Y, Gaeta A L 2005 Opt. Express 13 6092
[8] Dahan D, Eisenstein G 2005 Opt. Express 13 6234
[9] Shumarkher E, Willinger A, Blit R, Dahan D, Eisenstein G 2006 Opt. Express 14 8540
[10] Marhic M E, Wong K K Y, Kazovsky L G 2004 IEEE Sel. Topics Quantum Electron. 10 1133
[11] Yi L L, Hu W S, Su Y K, Gao M Y, Leng L F 2006 IEEE Photon. Technol. Lett. 18 2575
[12] Li Y Z, Qian L J, Lu D Q, Fan D Y, Chen G H 2008 Chin. Phys. B 17 205
[13] Gui L, Xu K, Wang D P, Yin J, Wu J, Hong X B, Dai Y T, Zhang J Y, Lin J T 2011 Opt. Commun. 284 3095
[14] Agrawal G P 2007 Applications of Nonlinear Fiber Optics (3rd Ed) (New York: Academic Press) p245
[15] Hansryd J, Andrekson P A, Westlund M, Li J, Hedekvist P O 2002 IEEE Sel. Topics Quantum Electron. 8 506
[16] Zhu H N, Luo B, Pan W, Yan L S, Zhao J P, Wang Z Y, Gao X R 2013 Chin. Phys. Lett. 30 074206
[17] Ma Y N, Luo B, Pan W, Yan L S, Zou X H, Yi A L, Ye J, Wen K H, Zheng D 2012 Acta Phys. Sin. 61 014215 (in Chinese) [马雅男, 罗斌, 潘炜, 闫连山, 邹喜华, 易安林, 叶佳, 温坤华, 郑狄 2012 61 014215]
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[1] Khurgin J B, Tucker R S 2009 Slow Light: Science and Applications (New York: CRC Press) p293
[2] Zhu Z M, Gauthier D J, Boyd R W 2007 Science 318 1748
[3] Firstenberg O, Shuker M, Davidson N, Ron A 2009 Phys. Rev. Lett. 102 043601
[4] Camacho R M, Broadbent C J, Ali-Khan I, Howell J C 2007 Phys. Rev. Lett. 98 043902
[5] Alic N, Windmiller J R, Coles J B, Radic S 2008 IEEE Sel. Topics Quantum Electron. 14 681
[6] Okawachi Y, Bigelow M S, Sharping J E, Zhu Z M, Schweinsberg A, Gauthier D J, Boyd R W, Gaeta A L 2005 Phys. Rev. Lett. 94 153902
[7] Sharping J E, Okawachi Y, Gaeta A L 2005 Opt. Express 13 6092
[8] Dahan D, Eisenstein G 2005 Opt. Express 13 6234
[9] Shumarkher E, Willinger A, Blit R, Dahan D, Eisenstein G 2006 Opt. Express 14 8540
[10] Marhic M E, Wong K K Y, Kazovsky L G 2004 IEEE Sel. Topics Quantum Electron. 10 1133
[11] Yi L L, Hu W S, Su Y K, Gao M Y, Leng L F 2006 IEEE Photon. Technol. Lett. 18 2575
[12] Li Y Z, Qian L J, Lu D Q, Fan D Y, Chen G H 2008 Chin. Phys. B 17 205
[13] Gui L, Xu K, Wang D P, Yin J, Wu J, Hong X B, Dai Y T, Zhang J Y, Lin J T 2011 Opt. Commun. 284 3095
[14] Agrawal G P 2007 Applications of Nonlinear Fiber Optics (3rd Ed) (New York: Academic Press) p245
[15] Hansryd J, Andrekson P A, Westlund M, Li J, Hedekvist P O 2002 IEEE Sel. Topics Quantum Electron. 8 506
[16] Zhu H N, Luo B, Pan W, Yan L S, Zhao J P, Wang Z Y, Gao X R 2013 Chin. Phys. Lett. 30 074206
[17] Ma Y N, Luo B, Pan W, Yan L S, Zou X H, Yi A L, Ye J, Wen K H, Zheng D 2012 Acta Phys. Sin. 61 014215 (in Chinese) [马雅男, 罗斌, 潘炜, 闫连山, 邹喜华, 易安林, 叶佳, 温坤华, 郑狄 2012 61 014215]
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