4.6 Article

Graphene-on-silicon hybrid plasmonic-photonic integrated circuits

期刊

NANOTECHNOLOGY
卷 28, 期 24, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1361-6528/aa7128

关键词

graphene plasmonics; silicon photonics; mid-infrared; hybrid plasmonic-photonic integrated circuits

资金

  1. konica minolta
  2. Burroughs Wellcome Foundation
  3. MEXT APSA

向作者/读者索取更多资源

Graphene surface plasmons (GSPs) have shown great potential in biochemical sensing, thermal imaging, and optoelectronics. To excite GSPs, several methods based on the near-field optical microscope and graphene nanostructures have been developed in the past few years. However, these methods suffer from their bulky setups and low GSP-excitation efficiency due to the short interaction length between free-space vertical excitation light and the atomic layer of graphene. Here we present a CMOS-compatible design of graphene-on-silicon hybrid plasmonic-photonic integrated circuits that achieve the in-plane excitation of GSP polaritons as well as localized surface plasmon (SP) resonance. By employing a suspended membrane slot waveguide, our design is able to excite GSP polaritons on a chip. Moreover, by utilizing a graphene nanoribbon array, we engineer the transmission spectrum of the waveguide by excitation of localized SP resonance. Our theoretical and computational study paves a new avenue to enable, modulate, and monitor GSPs on a chip, potentially applicable for the development of on-chip electro-optic devices.

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