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Highly efficient graphene terahertz modulator with tunable electromagnetically induced transparency-like transmission

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Abstract
Graphene-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 0.05eV. The proposed scheme can be utilized in active optical devices that require low power consumption. © 2023, The Author(s).
Author(s)
Kim, MyunghwanKim, Seong-HanKang, ChulKim, SoeunKee, Chul-Sik
Issued Date
2023-04
Type
Article
DOI
10.1038/s41598-023-34020-2
URI
https://scholar.gist.ac.kr/handle/local/10237
Publisher
Nature Research
Citation
Scientific Reports, v.13, no.1
ISSN
2045-2322
Appears in Collections:
Research Institutes > 1. Journal Articles
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