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Tunable Multimode Interference Devices

机译:可调多模干扰设备

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A tunable multimode interference (MMI) coupler that operates by modifying the phase of the multiple images that are formed around the midpoint of the MMI section is demonstrated. The phase change is achieved by current injection, and therefore minimizing current spreading is crucial for optimal operation. A zinc in-diffusion process has been implemented to selectively define p-i-n regions and effectively regulate the current spreading by controlling the depth of the zinc doping. Using this process a tunable 3-dB MMI coupler has been fabricated. Our initial results show that the device can be easily tuned all the way from a 90:10 to a 30:70 splitting ratio of the optical power transmitted through the two output ports. We believe that further improvement on the device fabrication will lead to a more symmetric tuning response of the device. Nevertheless, the initial results are very encouraging since, to our knowledge, this degree of tuning has never been experimentally demonstrated in similar MMI devices. Furthermore, this device processing technique can easily be applied to a wide variety of semiconductor photonic switches that operate on MMI effects.
机译:演示了一种可调谐多模干扰(MMI)耦合器,该耦合器通过修改围绕MMI部分中点形成的多个图像的相位进行操作。通过电流注入可以实现相位变化,因此,最小化电流散布对于优化操作至关重要。已经实施了锌扩散工艺,以选择性地定义p-i-n区域,并通过控制锌掺杂的深度来有效地调节电流扩散。使用该过程,可制造出可调的3 dB MMI耦合器。我们的初步结果表明,该设备可以很容易地从两个输出端口传输的光功率从90:10到30:70的分光比一直进行调谐。我们相信,对器件制造的进一步改进将导致器件的调谐响应更加对称。尽管如此,初始结果还是令人鼓舞的,因为据我们所知,这种调谐程度从未在类似的MMI设备中通过实验得到证明。此外,这种器件处理技术可以很容易地应用于以MMI效应工作的各种半导体光子开关。

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