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Maximizing energy coupling to complex plasmonic devices by injecting light into eigenchannels

机译:通过将光注入本征通道最大程度地提高与复杂等离子设备的能量耦合

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摘要

Surface plasmon polaritons have attracted broad attention in the optoelectronics field due to their ability to merge nanoscale electronics with high-speed optical communication. As the complexity of optoelectronic devices increases to meet various needs, this integration has been hampered by the low coupling efficiency of light to plasmonic modes. Here we present a method to maximize the coupling of far-field optical waves to plasmonic waves for arbitrarily complex devices. The method consists of experimentally identifying the eigenchannels of a given nanostructure and shaping the wavefront of incident light to a particular eigenchannel that maximizes the generation of plasmonic waves. Our proposed approach increases the coupling efficiency almost four-fold with respect to the uncontrolled input. Our study will help to facilitate the integration of electronics and photonics.
机译:表面等离激元极化子由于具有将纳米级电子与高速光通信融合的能力,因此在光电子领域引起了广泛关注。随着光电器件的复杂性增加以满足各种需求,光与等离子体模式的低耦合效率阻碍了这种集成。在这里,我们提出了一种方法,可将任意复杂设备的远场光波与等离子体波的耦合最大化。该方法包括通过实验确定给定纳米结构的本征通道,并将入射光的波阵面整形为一个特定的本征通道,以最大程度地产生等离子体波。相对于不受控制的输入,我们提出的方法将耦合效率提高了近四倍。我们的研究将有助于促进电子和光子学的集成。

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