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Characterization and modeling of a dispersive cavity mode-locked erbium-doped fiber laser

机译:色散腔锁模掺铒光纤激光器的表征和建模

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A novel, compact, polarization insensitive mode-locked erbium-doped fiber laser producing 2 ps pulses was constructed. The laser was passively mode-locked using a 75 period InGaAs/InAlAs multiple quantum well saturable absorber grown lattice matched on an InP substrate. The laser was constructed in a linear cavity, Fabry-Perot configuration with the saturable absorber at one end of the cavity and a chirped fiber Bragg grating at the other end. The output pulses are chirped and were further characterized by varying their energies and propagating them down different lengths of standard optical fiber. The laser cavity was modeled using the complex Ginzburg-Landau equation derived under the condition that nonlinear changes to the pulse must be small per round-trip. The contribution of the semiconductor saturable absorber was modeled using a two-level rate equation. The free carrier absorption within the semiconductor contributes to the refractive index which was shown numerically to result in an additional frequency shift. The modeling is in close agreement with the pulse propagation experiments.
机译:构建了一种新颖,紧凑的极化不敏感模式锁定的铒掺杂光纤激光器2ps脉冲。使用75周期的InGaAs / Inalas多量子阱可饱和吸收剂生长晶格在INP基板上匹配激光器被动地锁定。激光在线性腔内构造,在腔的一端的饱和吸收器和另一端的啁啾纤维布拉格光栅。输出脉冲被啁啾并且通过改变它们的能量并将它们传播到不同长度的标准光纤来进一步表征。使用源于脉冲的非线性变化的条件下,使用复杂的Ginzburg-Landau方程进行模拟激光腔,必须每往返脉冲的非线性变化。使用两级速率方程建模半导体可饱和吸收器的贡献。半导体内的自由载体吸收有助于折射率,其在数值上示出以导致额外的频移。模型与脉冲传播实验密切一致。

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