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Low Power Nonlinear Active Devices Based on Intrinsic Metal Nonlinearities

机译:基于固有金属非线性的低功率非线性有源器件

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摘要

In this paper, we report a novel low-power nonlinear plasmonic nanoswitch mainly based on optical nonlinearity of centro-symmetric metals. We consider metal nonlinear terms including electrical and magnetic parts of Lorentz force and convective effect, due to the free electron mobility and Lorentz oscillator for bound electrons. We use hydrodynamic model for free electrons of metal to describe nonlinear terms that play more significant role in the second and third harmonic generation processes. We study the impact of each individual term. Our simulation results show that the convective term is much more effective than the others. We simulate the second harmonic generation of 2-D nanopillar and plasmonic switch by the 2-D finite difference time domain method. The required powers for exciting the intrinsic metal nonlinearities due to the free and bound electrons are less than those of other kinds of nonlinearities such as Kerr effect in dielectrics. In our nanoswitch, fundamental frequency as a pump signal controls each output ports and switching performance.
机译:在本文中,我们报告了一种主要基于中心对称金属的光学非线性的新型低功率非线性等离子体纳米开关。由于自由电子迁移率和束缚电子的洛伦兹振荡器,我们考虑金属非线性项,包括洛伦兹力的电磁部分和对流效应。我们使用金属自由电子的流体动力学模型来描述非线性项,这些非线性项在二次谐波和三次谐波生成过程中起着更为重要的作用。我们研究每个术语的影响。我们的模拟结果表明,对流项比其他项有效得多。我们通过二维有限差分时域方法模拟了二维纳米柱和等离子体开关的二次谐波产生。由于自由电子和束缚电子而激发本征金属非线性所需要的功率小于电介质中克尔效应等其他非线性的功率。在我们的纳米开关中,基频作为泵浦信号控制着每个输出端口和开关性能​​。

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