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Cavity-Mode Properties of Semiconductor Lasers Operating in Strong-Feedback Regime

Cavity-Mode Properties of Semiconductor Lasers Operating in Strong-Feedback Regime
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摘要 This paper investigates the modal properties of semiconductor lasers operating in the strong-feedback regime. Analytical expressions are developed based on an iterative travelling-wave model, which enable a complete and quantitative description of a compound cavity mode in its steady state. Additional information is provided about the physical inside into a compound laser system, such as a bifurcation diagram of the compound cavity modes for full variation range (from 0 to 1) of the external reflection coefficient and a more general shape for the diagram of photon density versus mode phase - this latter will reduce to the classical "ellipse" in the weak-feedback regime. It is shown that in the strong-feedback regime, a feedback laser is characterized by a small mode number and a high density of photons. This behavior confirms previous experimental observations, showing that beyond the coherence-collapse regime, the compound laser system could be re-stabilized, and that as a result power-enhanced low-noise stable laser operation with quasi-uniform pulsation is possible with external-mirror reflectivity close to 1. Moreover, it is also shown that for a compound system operating in the strong-feedback regime, an anti-reflection treatment of a laser can significantly reduce its current threshold, and that in the absence of this treatment excitation of a minimum-linewidth mode with higher output power would be possible inside such a system. Finally, it is shown that in the weak-feedback regime except for a phase shift the iterative travelling-wave model will reduce to the Lang-Kobayashi model in cases where the product of the feedback rate and the internal round-trip time is much less than unity (that would mean in situations of as-cleaved lasers).
出处 《Journal of Physical Science and Application》 2015年第3期209-219,共11页 物理科学与应用(英文版)
关键词 Semiconductor lasers external optical feedback compound cavity modes weak-feedback regime strong-feedbackregime coherence collapse iterative travelling-wave model Lang-Kobayashi model. 半导体激光器 弱反馈 机制 模特性 复合系统 行波模型 稳定状态 激光系统
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参考文献22

  • 1Tromborg, B., Osmundsen, J. H., Olesen, H. 1984. "Stability Analysis for a Semiconductor Laser in an External Cavity." IEEE Journal of Quantum Electronics QE-20 (9): 1023-32.
  • 2Schunk, N. and Petermann, K. 1988. "Numerical Analysis of the Feedback Regimes for a Single-Mode Semiconductor Laser with External Feedback." 1EEE Journal of Quantum Electronics 24 (7): 1242-7.
  • 3Lang, R. and Kobayashi, K. 1980. "External Optical Feedback Effects on Semiconductor Injection Laser Properties." IEEE Journal of Quantum Electronics QE-16 (3): 347-55.
  • 4Lenstra, D., Verbeek, B. H. and Den Boer, A. J. 1985. "Coherence Collapse in Single-Mode Semiconductor Lasers due to Optical Feedback." 1EEE Journal of Quantum Electronics 21 (6): 674-9.
  • 5Fujiwara, M., Kubota, K. and Lang, R. 1981. "Low Frequency Intensity Fluctuation in Laser Diode with External Optical Feedback." Applied Physics Letters 38: 217-20.
  • 6Ye, J., Li, H. and Mclnerney, J. G. 1993. "Period-Doubling Route to Chaos in a Semiconductor Laser with Weak Optical Feedback." Physical Review A 47 (3): 2249-52.
  • 7Sano, T. 1994. "Antimode Dynamics and ChaoticItinerancy in the Coherence Collapse of Semiconductor Lasers with optical Feedback." Physical Review A 50 (3), 2719-26.
  • 8Zamora-Munt, J., Masoller, C. and Garcia-Ojalvo, J. 2010. "Transient Low-Frequency Fluctuations in Semiconductor Lasers with Optical Feedback." Physical Review A 81, 033820, 1-8.
  • 9Sporleder, F. 1983. "Travelling Wave Line Model for Laser Diodes with External Optical Feedback." In Proceedings of the URSI International Symposium on Electromagnetic Theory, International Union of Radio Science, Brussels, 585-8.
  • 10Mark, J. 1989. Danish Center for Applied Mathematics and Mechanics. Rep. $48.

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