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Fast Plasmons Propagating in Graphene Plasmonic Waveguides with Negative Index Metamaterial Claddings

机译:在具有负指数超材料包层中的石墨烯等离子体波导中传播的快速等离子体

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摘要

We propose the monolayer graphene plasmonic waveguide (MGPW), which is composed of graphene core sandwiched by two graphene metamaterial (GMM) claddings and investigate the properties of plasmonic modes propagating in the waveguide. The effective refraction index of the GMMs claddings takes negative (or positive) at the vicinity of the Dirac-like point in the band structure. We show that when the effective refraction index of the GMMs is positive, the plasmons travel forward in the MGPW with a positive group velocity (vg > 0, vp > 0). In contrast—for the negative refraction index GMM claddings—a negative group velocity of the fundamental mode (vg < 0, vp > 0) appears in the proposed waveguide structure when the core is sufficiently narrow. A forbidden band appears between the negative and positive group velocity regions, which is enhanced gradually as the width of the core increases. On the other hand, one can overcome this limitation and even make the forbidden band disappear by increasing the chemical potential difference between the nanodisks and the ambient graphene of the GMM claddings. The proposed structure offers a novel scheme of on-chip electromagnetic field and may find significant applications in the future high density plasmonic integrated circuit technique.
机译:我们提出了单层石墨烯等离子体波导(MgPW),其由由两个石墨烯超材料(GMM)包层夹在一起的石墨烯芯构成,并研究在波导中传播的等离子体模式的性质。 GMMS包层的有效折射率在带结构中的DIRAC样点附近为负(或正)。我们表明,当GMM的有效折射率为正时,等离子体在MGPW中向前行驶,正群速度(Vg> 0,Vp> 0)。相反 - 对于负折射率GMM包层 - 当芯足够窄时,在所提出的波导结构中出现基本模式(VG <0,VP> 0)的负群速度。在负组群速度区域之间出现禁用带,随着核心的宽度增加而逐渐增强。另一方面,人们可以通过提高基因组钝化的纳米小管和环境石墨烯之间的化学电位差异来使禁止带消失。所提出的结构提供了一种片上电磁场的新颖方案,可在未来的高密度等离子体集成电路技术中找到显着的应用。

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