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Limitations on ultrafast optical switching in a semiconductor laser amplifier operating at transparency current

机译:在透明电流下操作半导体激光放大器中超快光学切换的限制

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摘要

Ultrafast optical switching in a semiconductor laser amplifier (SLA) at transparency current is studied under a strong pump condition. The switch configuration is a nonlinear optical loop mirror with a SLA as the nonlinear element. We demonstrate optical switching with 2 ps recovery time and 60% nonlinear transmission at switching energy of 9 pJ. We find that the transparency current is pump power dependent and that the transparency current is different for uniform 7-bit input control pulses at 100 Gb/s. We believe these two outcomes are due to significant carrier generation via two photon absorption (TPA) at high pump intensity. To verify our hypothesis, we modify coupled propagation equations by including the carrier generation due to the TPA and solve the equations numerically. Good agreement between the experimental and simulation results is obtained. We conclude that to achieve complete pattern-independent 100 Gb/s optical switching using a SLA at transparency current, we have to avoid TPA or use the SLA with a transit time shorter than the control pulse width. © 1999 American Institute of Physics.
机译:在透明度电流下在半导体激光器放大器(SLA)中的超快光学切换在强泵状态下研究。开关配置是具有作为非线性元件的SLA的非线性光学回路镜。我们展示了具有2 PS恢复时间的光学切换和9pj的开关能量下的60%非线性传输。我们发现透明度电流依赖于泵功率,并且透明度电流对于100 Gb / s的均匀7位输入控制脉冲不同。我们认为这两种结果是由于高泵强度的两种光子吸收(TPA)的显着载体产生。为了验证我们的假设,我们通过包括TPA引起的载波生成来修改耦合传播方程,并在数字上求解方程。获得实验和仿真结果之间的良好一致性。我们得出结论,为了在透明度电流下实现完整的图案独立于100 GB / S光学切换,我们必须避免TPA或者使用比控制脉冲宽度短的传输时间的SLA。 ©1999美国物理研究所。

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