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Graphene plasmonic waveguide: >> http://atw.cloudz.pw/download?file=graphene+plasmonic+waveguide << (Download)
Graphene plasmonic waveguide: >> http://atw.cloudz.pw/read?file=graphene+plasmonic+waveguide << (Read Online)
Deep subwavelength plasmonic waveguide switch in double graphene layer structure Hideo Iizuka1,a) and Shanhui Fan2,b) 1Toyota Central Research and Development Labs
Figure 3. Operation of hybrid graphene plasmonic waveguide modulators. a, Modulated AC transmission of the waveguide expressed in dB/µm as a
Using perturbation expansion of Maxwell equations with the nonlinear boundary condition, a generic propagation equation is derived to describe nonlinear effects
Here we realize efficient electro-optic modulation in we successfully achieve a tunability of 0.13 dB ?m ?1 for our fabricated graphene-plasmonic waveguide
Here we report fabrication and study of hybrid graphene-plasmonic waveguide modulators. We consider several types of modulators and
In this paper, a graphene hybrid plasmonic waveguide (HPW) modulator, in which a single layer of graphene-hexagonal-boron-nitride-graphene (graphene-hBN-gr
International Journal of Optics is a peer-reviewed, "Graphene-based plasmonic waveguides for photonic integrated circuits," Optics Express,
Graphene-Based Plasmonic Platform for Recon?gurable Terahertz For graphene plasmonic waveguides, typically slow-wave in nature,31,34 the ?elds are strongly
Experimental evidence for the existence of plasmonic effects in graphene was first obtained with electron Graphene plasmon waveguides in single and paired
Graphene-based plasmonic waveguides for photonic integrated circuits . Jin Tae Kim* and Sung-Yool Choi . Creative Research Center for Graphene Electronics
LASER &PHOTONICS REVIEWS 570 J. Lao et al.: Tunable graphene-based plasmonic waveguides: nano modulators and nano attenuators studies, the proposed structure avoids
LASER &PHOTONICS REVIEWS 570 J. Lao et al.: Tunable graphene-based plasmonic waveguides: nano modulators and nano attenuators studies, the proposed structure avoids
wavelength graphene wedge and groove waveguides are investigated, which cently, graphene is emerging as a 2D plasmonic material [2-5], due to that graphene plas-
Dielectric loaded graphene plasmon waveguide (DLGPW) is proposed and investigated. An analytical model based on effective-index method is presented and verified by
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