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Highspeed Broadband Optical Modulation with Small Footprint Symmetrical IMI Graphene Hybrid Plasmonic Waveguide

机译:小尺寸对称IMI石墨烯混合等离子波导的高速宽带光调制

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The modal properties and modulation characteristics of the fundamental gap mode supported by nanowire based symmetrical IMI graphene hybrid plasmonic waveguide are investigated employing the finite element method. The proposed modulator even with its remarkably small footprint offers both high extinction ratio (as high as 40 dB) and large modulation bandwidth (as large as 237 GHz) simultaneously with only 2.4 µm long active region at the telecommunication wavelength. The optical capacitance effect along with IMI like mode coupling are reported here for this improved modulation performance. Furthermore, a deep subwavelength mode size (~λ2/400) with low energy consumption per bit (as small as 0.9 fJ/bit) suggests its highly dense integration in photonic integrated circuits. Also, the performance variation of this waveguide is explored with respect to the alteration of operating wavelength and cross-sectional geometry.
机译:利用有限元方法研究了基于纳米线的对称IMI石墨烯混合等离子体激元波导所支持的基本间隙模的模态特性和调制特性。所提出的调制器即使占用空间非常小,也能提供高消光比(高达40 dB)和大调制带宽(高达237 GHz),同时在电信波长下只有2.4 µm长的有源区域。为了改善调制性能,这里报道了光电容效应以及类似IMI的模式耦合。此外,深亚波长模式大小(〜λ 2 / 400)/每位低的能量消耗(低至0.9 fJ / bit)表明其在光子集成电路中的集成度很高。同样,关于工作波长和横截面几何形状的变化,探索了这种波导的性能变化。

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