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Volume 19 Issue 5
Sep.  1997
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Chen Weiyou, Liu Shiyong. CIRCUIT MODEL FOR DISTRIBUTED FEEDBACK SEMICONDUCTOR LASERS[J]. Journal of Electronics & Information Technology, 1997, 19(5): 658-664.
Citation: Chen Weiyou, Liu Shiyong. CIRCUIT MODEL FOR DISTRIBUTED FEEDBACK SEMICONDUCTOR LASERS[J]. Journal of Electronics & Information Technology, 1997, 19(5): 658-664.

CIRCUIT MODEL FOR DISTRIBUTED FEEDBACK SEMICONDUCTOR LASERS

  • Received Date: 1995-12-26
  • Rev Recd Date: 1996-09-29
  • Publish Date: 1997-09-19
  • This paper presents a sample circuit model for no internal phase shift and single longitudinal mode DFB-LD, basing on the coupling wave equations for period waveguide structure and the rate equation for carrier density. The simulated results from this model are agree with the reports in the literature.
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  • Zhang L M, Ca,rroll J E. Large-signal dynamic model of the DFB lasers. IEEE J. of Quantum[2]Electron., 1992, QE-28(3): 604-611.[3]Vankwikelberge只Morthier G, Baets R. CLADISS-A longitudinal multimode model for the analysis[4]of the static, dynamic, and stochastic behavior of diode lasers with distributed feedback. IEEE J. of Quantum Electron., 1990, QE-26(10): 1728-1741.[5]Agrawal G P, Dutta N K. Long-wavelength Semiconductor Lasers. New York: Van Nostrand Reinhold[6]Company Inc., 1986, 287-332.[7]Strifer W, Scifres D R, Burnham R D. Coupling coefficients for distributed feedback single-and double-heterostructure diode lasers. IEEE J. of Quantum Electron., 1975, QE-11(11): 867-873.[8]亚里夫 A,叶 P 著,于荣金,金锋译.晶体中的光波--激光的传播与控制.北京:科学出版社,1991,160.[9]Agrawal G P, Dutta N K. Polarization characteristics of distributed feedback semiconductor lasers[J].App. Phys. Lett.1985, 46(3):213-215[10]Tsang C F, Marcenac D D, Carroll J E, Zhang L M. Comparison between power matrix model and time domain model in modeling large signal responses of DFB lasers[J].IEE Proc: J.1994, 141(2):89-96
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