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All-optical logic gates based on two-photon absorption in semiconductor optical amplifiers

机译:半导体光放大器中基于双光子吸收的全光逻辑门

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摘要

When the two-photon absorption of a high intensity pump beam takes place in a semiconductor optical amplifier there is an associated fast phase change of a weak probe signal. A scheme to realize fast all-optical XOR logic function using two-photon absorption induced phase change has been analyzed. Rate equations for semiconductor optical amplifiers, for input data signals with high intensity, configured in the form of a Mach-Zehnder interferometer has been solved. The input intensities are high enough so that the two-photon induced phase change is larger than the regular gain induced phase change. The model shows that both XOR operation and pseudo-random binary sequence generation at 250 Gb/s with good signal to noise ratio is feasible.
机译:当在半导体光放大器中发生高强度泵浦光束的双光子吸收时,弱探针信号会发生快速的相变。分析了一种利用双光子吸收引起的相变实现快速全光XOR逻辑功能的方案。已经解决了以马赫曾德尔干涉仪的形式配置的,用于高强度输入数据信号的半导体光放大器的速率方程。输入强度足够高,以致于双光子引起的相变大于常规增益引起的相变。该模型表明,以良好的信噪比在250 Gb / s下进行XOR操作和伪随机二进制序列生成都是可行的。

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