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Demonstration and optimisation of an ultrafast all-optical and logic gate using four-wave mixing in a semiconductor optical amplifier

机译:在半导体光放大器中使用四波混频演示和优化超快全光和逻辑门

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摘要

We have proposed an all-optical AND logic gate based on four-wave mixing (FWM) in a semiconductor optical amplifier (SOA) integrated with an optical filter. In the scheme proposed, the preferred logical function can be performed without using a continuous- wave (cw) signal. The modified nonlinear Schr?dinger equation (MNLSE) is used for the modelling wave propagation in a SOA. The MNLSE takes into account all nonlinear effects relevant to pico- and sub-picosecond pulse durations and is solved by the finite-difference beam-propagation method (FD-BPM). Based on the simulation results, the optimal output signal with a 40-fJ energy can be obtained at a bit rate of 50 Gb s ~(-1). In the simulations, besides the nonlinearities included in the model, the pattern effect of the signals propagating in the SOA medium and the effect of the input signal bit rate are extensively investigated to optimise the system performance.
机译:我们已经在集成了滤光片的半导体光放大器(SOA)中提出了基于四波混频(FWM)的全光AND逻辑门。在提出的方案中,可以在不使用连续波(cw)信号的情况下执行优选的逻辑功能。修改后的非线性薛定er方程(MNLSE)用于对SOA中的波传播进行建模。 MNLSE考虑了与皮秒和亚皮秒脉冲持续时间有关的所有非线性效应,并通过有限差分光束传播方法(FD-BPM)解决。根据仿真结果,可以以50 Gb s〜(-1)的比特率获得具有40fJ能量的最佳输出信号。在仿真中,除了模型中包含的非线性之外,还广泛研究了在SOA介质中传播的信号的图案效应和输入信号比特率的效应,以优化系统性能。

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