首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Ultrathin ultra-broadband electro-absorption modulator based on few-layer graphene based anisotropic metamaterial
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Ultrathin ultra-broadband electro-absorption modulator based on few-layer graphene based anisotropic metamaterial

机译:基于几层石墨烯各向异性超材料的超薄超宽带电吸收调制器

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摘要

In this article, a few-layered graphene-dielectric multilayer (metamaterial) electro-optic modulator has been proposed in the mid and far infrared range that works on electro-absorption mechanism. Graphene, both mono layer and few layer, is an actively tunable optical material that allows control of inter-band and intra-band transition by tuning its chemical potential. Utilizing this unique feature of graphene, we propose a multilayer graphene dielectric stack where few layer graphene is preferred over mono layer graphene. Although the total thickness of the stack still remains in the nanometer range, this device can exhibit superior performances in terms of (i) high modulation depth, (ii) ultra-broadband performance, (iii) ultra-low insertion loss due to inherent metamaterial properties, (iv) nano-scale footprint, (v) polarization independence and (vi) capability of being integrated to a silicon waveguide. Interestingly, these superior performances, achievable by using few layer graphene with carefully designed metamaterial, may not be possible with mono layer graphene. Our proposals have been validated by both the effective medium theory and general transfer matrix method.
机译:在本文中,已提出了在中红外和远红外范围内起作用的几层石墨烯-介电多层(超材料)电光调制器,其作用在于电吸收机理。石墨烯(单层和很少层)都是一种可主动调谐的光学材料,可通过调节其化学势来控制带间和带内跃迁。利用石墨烯的这一独特功能,我们提出了一种多层石墨烯电介质堆栈,其中与单层石墨烯相比,很少层的石墨烯是优选的。尽管堆叠的总厚度仍保持在纳米范围内,但该器件在以下方面可以表现出优异的性能:(i)高调制深度,(ii)超宽带性能,(iii)由于固有的超材料而导致的超低插入损耗特性,(iv)纳米级足迹,(v)极化独立性和(vi)集成到硅波导的能力。有趣的是,单层石墨烯可能无法通过使用几层石墨烯和经过精心设计的超材料而实现的这些优越性能。我们的建议已通过有效介质理论和通用传递矩阵法得到了验证。

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