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Multiple p-n junction subwavelength gratings for transmission-mode electro-optic modulators

机译:用于传输模式电光调制器的多个P-N结亚波长光栅

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We propose a free-space electro-optic transmission modulator based on multiple p-n-junction semiconductor subwavelength gratings. The proposed device operates with a high-Q guided-mode resonance undergoing electro-optic resonance shift due to direct electrical control. Using rigorous electrical and optical modeling methods, we theoretically demonstrate a modulation depth of 84%, on-state efficiency 85%, and on-off extinction ratio of 19?dB at 1,550?nm wavelength under electrical control signals within a favorably low bias voltage range from ?4?V to +1?V. This functionality operates in the transmission mode and sustainable in the high-speed operation regime up to a 10-GHz-scale modulation bandwidth in principle. The theoretical performance prediction is remarkably advantageous over plasmonic tunable metasurfaces in the power-efficiency and absolute modulation-depth aspects. Therefore, further experimental study is of great interest for creating practical-level metasurface components in various application areas.
机译:我们提出了一种基于多个P-N结半导体亚波长光栅的自由空间电光传输调制器。所提出的装置用高Q导向模式谐振,由于直接电控制而经历电光谐振频移​​。使用严格的电气和光学建模方法,理论上证明了在有利地低偏置电压的电控制信号下在1,550·nm波长下的84%,导通效率85%和接通消光比的调制深度为19·dB。范围从?4?v到+1?v。该功能在传输模式下运行,并且原则上可持续高速操作制度可持续到10GHz级调制带宽。理论性能预测在功率效率和绝对调制深度方面的等离子体可调性质尺度上显着有利。因此,进一步的实验研究对于在各种应用领域创建实际水平的元表面组分非常有兴趣。

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