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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >All-optical logic based on ultrafast gain and index dynamics in a semiconductor optical amplifier
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All-optical logic based on ultrafast gain and index dynamics in a semiconductor optical amplifier

机译:半导体光放大器中基于超快增益和折射率动态特性的全光逻辑

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摘要

We investigate nonlinear carrier dynamics in a multiquantum-well semiconductor optical amplifier (SOA) in the context of ultrafast all-optical logic. A rate-equation model is presented that accounts for two-photon absorption, free-carrier absorption, self- and cross phase modulation, carrier heating, spectral, spatial hole burning, and self- and cross polarization modulation. The nonlinear refractive index dynamics is investigated theoretically and experimentally. We find nonlinear phase changes larger than Π radians, which recovers on a timescale in the order of 1 ps. We also investigate a nonlinear AND gate that consists of an SOA that is placed in an asymmetric Mach-Zehnder interferometer. We show that the gate can be operated using 800-fJ optical pulses with duration of 200 fs while having a contrast ratio larger than 11 dB.
机译:我们在超快全光逻辑的背景下研究多量子阱半导体光放大器(SOA)中的非线性载流子动力学。提出了一个速率方程模型,该模型考虑了双光子吸收,自由载流子吸收,自和交叉相位调制,载流子加热,光谱,空间空穴燃烧以及自和交叉极化调制。理论和实验研究了非线性折射率动力学。我们发现非线性相位变化大于弧度,它在1 ps量级的时间尺度上恢复。我们还研究了非线性AND门,它由放置在非对称Mach-Zehnder干涉仪中的SOA组成。我们展示了可以使用持续时间为200 fs的800 fj光脉冲操作门,同时对比度大于11 dB。

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