Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5496888 | Physics Letters A | 2017 | 18 Pages |
Abstract
A broad band tunable graphene based silicon-air grating structure is proposed. Electromagnetically-induced-transparency (EIT) window can be successfully tuned by virtually setting the desired Fermi energy levels on graphene sheets. Carrier mobility plays an important role in modulating the resonant depth. Furthermore, by changing the grating periods, light can be trapped at corresponding resonant positions where slow down factor is relatively larger than in the previous works. This structure can be used as a highly tunable optoelectronic device such as optical filter, broad-band modulator, plasmonic switches and buffers.
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Physical Sciences and Engineering
Physics and Astronomy
Physics and Astronomy (General)
Authors
Buzheng Wei, Huaiqing Liu, Guobin Ren, Yuguang Yang, Shen Ye, Li Pei, Shuisheng Jian,