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Modelling of dynamic performance of semiconductor lasers under subthreshold biasing

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The problem of turn-on delay induced by the subthreshold bias of the semiconductor laser in the burst-mode fiber optic transmitters is discussed. An easy to use method of estimation of the turn-on delay is proposed and experimentally verified. The Simulink model of the laser is proposed, allowing to simulate the data pattern distortions in fiber optic communication systems. Presented considerations may be useful for high-speed burst-mode system designers.
Rocznik
Strony
187--192
Opis fizyczny
Bibliogr. 13 poz., rys., tab., wykr.
Twórcy
autor
  • Institute of Electronics, University of Mining and Metallurgy, 30 Mickiewicza Ave., 30-059 Cracow, Poland
  • Institute of Electronics, University of Mining and Metallurgy, 30 Mickiewicza Ave., 30-059 Cracow, Poland
Bibliografia
  • 1. G.P. Agrawal, Fiber Optic Communication Systems, Willey, New York, 1997.
  • 2. N.J. Frigo, “A survey of fiber optics in local access architectures” in Optical Fiber Telecommunications IIIA, edited by I.P. Kaminow and T.L Koch, Academic Press, San Diego, 1997.
  • 3. M. Yano, K. Yamaguchi, and H. Yamashita, “Global optical access systems based on ATM-PON”, FUJITSU Sci. Tech. J. 35, 56–70 (1999).
  • 4. G. Kramer and G. Pesavento, “Ethernet passive optical network (EPON): building a next-generation optical access network”, IEEE Communications Magazine, 62–73 (2002).
  • 5. Y. Ota, R.G. Swartz, M. Tarsia, and V.D. Archer, “Low-power, high-sensitivity 30-Mbit/s burst-mode/packet receiver for PON application”, OFC’94, 210–212 (1994).
  • 6. S. Brigati, P. Colombara, L. D’Ascoli, U. Gatti, T. Kerekes, P. Malcovati, and A. Profumo, “A SiGe BiCmos burst-mode 155 Mbit/s receiver for PON”, 27th European Solid State Circuit Conf. (2001).
  • 7. L.P. Chen, M.Y. Li, C.J. Chang-Hasnain, and K.Y. Lan: “A low-power 1 Gbit/s CMOS laser driver for a zero-bias modulated optical transmitter”, IEEE Photon. Techn. Lett. 9, 997–999 (1997)
  • 8. L.A. Coldren and S.W. Corzine, Diode Lasers and Photonic Integrated Circuits, Wiley, New York, 1995.
  • 9. B. Mroziewicz, M. Bugajski, and W. Nakwaski, Physics of Semiconductor Lasers, PWN, Warsaw, 1991.
  • 10. G.P. Agrawal and T.M. Shen, “Power penalty due to decision-time jitter in optical communication systems”, Electron. Lett. 22, 718–719 (1987).
  • 11. K. Schumacher and J.J. O’Reilly, “Power penalty due to jitter on optical communication systems”, Electron. Lett. 23, 450–451 (1986).
  • 12. H.M. Salgado, M.M. Freire, and J.J. O’Reilly, “Extraction of semiconductor intrinsic laser parameters by intermodulation distortion analysis”, IEEE Photon. Techn. Letters 9, 1331–1333 (1997).
  • 13. J.C. Cartledge and R.C. Srinivasan, “Extraction of DFB laser rate equation parameters for system simulation purposes”, IEEE J. Lightwave Techn. 15, 852–860 (1997).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWA1-0005-0104
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