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On the Power-Bandwidth Trade-off in Bistable Photonic Switches

机译:双稳态光子开关的功率带宽权衡

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摘要

Low power operation and high speed have always been desirable in applications such as data processing and telecommunications. While achieving these two goals simultaneously, however, one encounters the well-known power-bandwidth trade-off. This is here discussed in a typical bistable switch based on a two-dimensional photonic crystal with Kerr type nonlinearity. The discussion is supported by the nonlinear finite difference time domain (FDTD) simulation of a direct coupled structure with a home-developed code. Two cases of working near resonant and off-resonant are simulated to compare the power and the speed of the device in the two cases. It is shown that working near-resonance reduces the power levels at the expense of reducing the settling time, i.e. the bandwidth limitation. The hystersis loops for the device are also obtained with both coupled-mode theory and quasi-steady state FDTD simulation. The impact of operating near/off resonance on the shape of the hystersis loop is discussed as a confirmation of the previous results. Alternative ways of reducing the power while saving the bandwidth are also examined. The discussion is general and one may investigate other optical switches to obtain similar results.
机译:在诸如数据处理和电信的应用中,一直期望低功率操作和高速。然而,在同时实现这两个目标的同时,遇到了众所周知的功率带宽折衷。本文在一个典型的基于具有Kerr型非线性的二维光子晶体的双稳态开关中对此进行了讨论。该讨论得到了带有自行开发代码的直接耦合结构的非线性有限时域(FDTD)仿真的支持。模拟了在谐振和非谐振附近工作的两种情况,以比较两种情况下设备的功率和速度。结果表明,工作于近谐振会降低功率电平,但会降低建立时间,即带宽限制。器件的磁滞回线还可以通过耦合模式理论和准稳态FDTD仿真获得。讨论工作近/关谐振对磁滞回线形状的影响,作为对先前结果的确认。还研究了在节省带宽的同时降低功耗的其他方法。讨论是一般性的,可能会调查其他光开关以获得相似的结果。

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