• Frontiers of Optoelectronics
  • Vol. 4, Issue 3, 308 (2011)
Xiaofan ZHAO, Caiyun LOU*, and Yanming FENG
Author Affiliations
  • Tsinghua National Laboratory for Information and Science Technology/State Key Laboratory on Integrated Optoelectronics, Department of Electronic Engineering, Tsinghua University, Beijing 100084, China
  • show less
    DOI: 10.1007/s12200-011-0143-z Cite this Article
    Xiaofan ZHAO, Caiyun LOU, Yanming FENG. Optical signal processing based on semiconductor optical amplifier and tunable delay interferometer[J]. Frontiers of Optoelectronics, 2011, 4(3): 308 Copy Citation Text show less
    References

    [1] Cotter D, Manning R J, Blow K J, Ellis A D, Kelly A E, Nesset D, Phillips I D, Poustie A J, Rogers D C. Nonlinear optics for highspeed digital information processing. Science, 1999, 286(5444): 1523-1528

    [2] Houbavlis T, Zoiros K E, Kalyvas M, Theophilopoulos G, Bintjas C, Yiannopoulos K, Pleros N, Vlachos K, Avramopoulos H, Schares L, Occhi L, Guekos G, Taylor J R, Hansmann S, Miller W. Alloptical signal processing and applications within the esprit project DO_ALL. Journal of Lightwave Technology, 2005, 23(2): 781-801

    [3] Dong J, Zhang X, Fu S, Xu J, Shum P, Huang D. Ultrafast all-optical signal processing based on single semiconductor optical amplifier and optical filtering. IEEE Journal on Selected Topics in Quantum Electronics, 2008, 14(3): 770-778

    [4] Huo L, Yang Y, Nan Y, Lou C, Gao Y. A study on the wavelength conversion and all-optical 3R regeneration using cross-absorption modulation in a bulk electroabsorption modulator. Journal of Lightwave Technology, 2006, 24(8): 3035-3044

    [5] Leuthold J, Moller L, Jaques J, Cabot S, Zhang L, Bernasconi P, Cappuzzo M, Gomez L, Laskowski E, Chen E,Wong-Foy A, Griffin A. 160 Gbit/s SOA all-optical wavelength converter and assessment of its regenerative properties. Electronics Letters, 2004, 40(9): 554-555

    [6] Yu Y, Zhang X, Rosas-Fernández J B, Huang D, Penty R V, White I H. Simultaneous multiple DWDM channel NRZ-to-RZ regenerative format conversion at 10 and 20 Gb/s. Optics Express, 2009, 17(5): 3964-3969

    [7] Nakamura S, Tajima K. Ultrafast all-optical gate switch based on frequency shift accompanied by semiconductor band-filling effect. Applied Physics Letters, 1997, 70(26): 3498-3500

    [8] Nielsen M L, Mork J. Increasing the modulation bandwidth of semiconductor-optical-amplifier-based switches by using optical filtering. Journal of the Optical Society of America. B, Optical Physics, 2004, 21(9): 1606-1619

    [9] Liu Y, Tangdiongga E, Li Z, Zhang S, de Waardt H, Khoe G D, Dorren H J S. Error-free all-optical wavelength conversion at 160 Gb/s using a semiconductor optical amplifier and an optical bandpass filter. Journal of Lightwave Technology, 2006, 24(1): 230-236

    [10] Ueno Y, Nakamura S, Tajima K, Kitamura S. 3.8-THz wavelength conversion of picosecond pulses using a semiconductor delayedinterference signal-wavelength converter (DISC). IEEE Photonics Technology Letters, 1998, 10(3): 346-348

    [11] Leuthold J, Joyner C H, Mikkelsen B, Raybon G, Pleumeekers J L, Miller B I, Dreyer K, Burrus C A. 100 Gbit/s all-optical wavelength conversion with integrated SOA delayed-interference configuration. Electronics Letters, 2000, 36(13): 1129-1130

    [12] Kim N Y, Tang X, Cartledge J C, Atieh A K. Design and performance of an all-optical wavelength converter based on a semiconductor optical amplifier and delay interferometer. Journal of Lightwave Technology, 2007, 25(12): 3730-3738

    Xiaofan ZHAO, Caiyun LOU, Yanming FENG. Optical signal processing based on semiconductor optical amplifier and tunable delay interferometer[J]. Frontiers of Optoelectronics, 2011, 4(3): 308
    Download Citation