4.6 Article

Enhanced spatial near-infrared modulation of graphene-loaded perfect absorbers using plasmonic nanoslits

Journal

OPTICS EXPRESS
Volume 23, Issue 25, Pages 32318-32328

Publisher

OPTICAL SOC AMER
DOI: 10.1364/OE.23.032318

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Funding

  1. National Natural Science Foundation of China (NSFC) [61307042, 41390453]
  2. Fundamental Research Funds for the Central Universities

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Modulating spatial near-infrared light for ultra-compact electrooptic devices is a critical issue in optical communication and imaging applications. To date, spatial near-infrared modulators based on graphene have been reported, but they showed limited modulation effects due to the relatively weak light-graphene interaction. In combination with graphene and metallic nanoslits, we design a kind of ultrathin near-infrared perfect absorber with enhanced spatial modulation effects and independence on a wide range of incident angles. The modulated spectral shift of central wavelength is up to 258.2 nm in the near-infrared range, which is more promising in applications than state-of-the-art devices. The modulation enhancement is attributed to the plasmonic nanoslit mode, in which the optical electric field is highly concentrated in the deep subwavelength scale and the light-graphene interaction is significantly strengthened. The physical insight is deeply revealed by a combination of equivalent circuit and electromagnetic field analysis. The design principles are not only crucial for spatial near-infrared modulators, but also provide a key guide for developing active near-infrared patch nanoantennas based on graphene. (C) 2015 Optical Society of America

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