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Harmonic and Intermodulation Performance of Quantum-Well Mach-Zehnder Electro-Optic Modulators with Electrical Biasing

机译:带电偏置的量子阱马赫曾德尔光电调制器的谐波和互调性能

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摘要

A mathematical model for the transfer function of the Mach-Zehnder interferometers based on the quantum-confined Stark effect (QCSE) is presented. The model, basically a cosine-series function, can easily yield closed-form expressions for the amplitudes of the harmonic and intermodulation components of the output when the input is formed of any scenario of large-amplitude multisinusoidal voltages. The special case of three-tone equal-amplitude input voltage is considered in detail. The results show the strong dependence of the harmonic and intermodulation performance on the electrical biasing. The results also show that for a proper selection of the electrical biasing the third-order intermodulation or the second-order intermodulation can be minimized. While the results obtained are in excellent agreement with previously published results, the present analysis is applicable to multisinusoidal input voltages with different scenarios and is not restricted to small-amplitude two-tone inputs only.
机译:提出了基于量子限制斯塔克效应(QCSE)的马赫曾德尔干涉仪传递函数的数学模型。当输入由大振幅多正弦电压的任何情况形成时,该模型基本上是一个余弦系列函数,可以轻松地产生输出的谐波和互调分量幅度的闭式表达式。详细考虑了三音等幅输入电压的特殊情况。结果表明,谐波和互调性能对电偏置的强烈依赖性。结果还表明,对于电偏置的适当选择,可以最小化三阶互调或二阶互调。虽然获得的结果与以前发表的结果非常吻合,但本分析适用于具有不同场景的多正弦输入电压,而不仅限于小幅度两音输入。

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