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Theoretical analysis of widely tunable external cavity semiconductor laser with sampled fiber grating

机译:带有采样光纤光栅的宽可调外腔半导体激光器的理论分析

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摘要

Combination of equivalent reflection cavity model and transmission line theory is applied in theoretical analysis of external cavity semiconductor lasers with sampled fiber Bragg grating. The effects of device parameters on the resonant cavity mode and the side mode suppression ratio have been discussed. For a perfect anti-coated facet and the high coupling efficiency, it is found that the Vernier effect between combed reflectivity peaks and F-P cavity modes can be destroyed and the laser will work on multi-wavelength. The high coupling efficiency plays the same role as the lower anti-reflection coating reflectivity in the side mode suppression ratio and the mode resonance. Finally, the side mode suppression ratio is investigated in detail depending on the anti-coating reflectivity, the coupling efficiency and the high-reflection coating reflectivity.
机译:将等效反射腔模型与传输线理论相结合,应用于带有采样光纤布拉格光栅的外腔半导体激光器的理论分析。讨论了器件参数对谐振腔模和侧模抑制比的影响。为了获得完美的抗镀膜刻面和高耦合效率,发现可以消除梳状反射率峰值与F-P腔模之间的游标效应,并且激光器可以在多波长下工作。在侧面模式抑制率和模式共振中,高耦合效率与较低的抗反射涂层反射率具有相同的作用。最后,根据防镀膜反射率,耦合效率和高反射膜反射率详细研究了侧模抑制比。

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