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Low power, compact hybrid plasmonic double microring electro-optical modulator

机译:低功耗,紧凑型混合等离子体双微型电光调制器

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In this work, we present an electro-optical modulator based on electromagnetically induced transparency (EIT). Our modulator employs a conductor-gap-silicon (CGS) microring resonator on each side of the input waveguide in a push-pull configuration utilizing an embedded electro-optical polymer (EOP). CGS waveguides support hybrid plasmonic modes offering a sound trade-off between mode confinement and propagation loss. The modulator is designed and analyzed using 3D finite difference time domain (FDTD) simulations. To have a high quality resonator, the rings are designed to have moderate waveguide propagation losses and a sub-micron radius of R = 805 nm. With an exact capacitance of just 1.06 fF per single microring resonator and applied voltage of 2 V, the exact energy consumption is estimated to be 4.24 fJ/bit. To the best of our knowledge, this figure represents 40% less power consumption in comparison with different modulators structures. The ultra-small capacitance of the proposed modulator and the instantaneous response of the used polymer make our design suitable for high bit rate applications. At the wavelength of -1550 nm-, the insertion loss is 0.34 dB and the extinction ratio is 10.23 dB.
机译:在这项工作中,我们介绍了一种基于电磁诱导的透明度(EIT)的电光调制器。我们的调制器在输入波导的每一侧采用导体 - 间隙 - 硅(CGS)微管谐振器在使用嵌入的电光聚合物(EOP)的推挽式配置中。 CGS波导支持混合等级模式在模式限制和传播损耗之间提供声音折衷。使用3D有限差分时域(FDTD)模拟设计和分析调制器。为了具有高质量的谐振器,该环设计成具有中等的波导传播损耗和r = 805nm的亚微米半径。每单次微型谐振器的精确电容仅为1.06 FF,施加电压为2 V,估计精确的能耗为4.24FJ /位。据我们所知,与不同的调制器结构相比,该数字表示40%的功耗。所提出的调制器的超小电容和二手聚合物的瞬时响应使我们的设计适用于高比特率应用。在-1550nm的波长下,插入损耗为0.34dB,消光比为10.23 dB。

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