Author:
Kim Myunghwan,Kim Seong-Han,Kang Chul,Kim Soeun,Kee Chul-Sik
Abstract
AbstractGraphene-based optical modulators have been extensively studied owing to the high mobility and tunable permittivity of graphene. However, weak graphene-light interactions make it difficult to achieve a high modulation depth with low energy consumption. Here, we propose a high-performance graphene-based optical modulator consisting of a photonic crystal structure and a waveguide with graphene that exhibits an electromagnetically-induced-transparency-like (EIT-like) transmission spectrum at terahertz frequency. The high quality-factor guiding mode to generate the EIT-like transmission enhances light-graphene interaction, and the designed modulator achieves a high modulation depth of 98% with a significantly small Fermi level shift of 0.05 eV. The proposed scheme can be utilized in active optical devices that require low power consumption.
Funder
GIST Research Institute
National Research Foundation of Korea,South Korea
Electronics and Telecommunications Research Institute
Publisher
Springer Science and Business Media LLC
Cited by
8 articles.
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