Three-stimulus control ultrasensitive Dirac point modulator using an electromagnetically induced transparency-like terahertz metasurface with graphene

Author:

Zhang Yonggang1,Qiu Fu1,Liang Lanju2,Yao Haiyun2,Yan Xin2,Liu Wenjia1,Huang Chengcheng1,Yao Jianquan3ORCID

Affiliation:

1. Anhui University of Science and Technology

2. Zaozhuang University

3. Tianjin University

Abstract

This letter presents a fabricated Dirac point modulator of a graphene-based terahertz electromagnetically induced transparency (EIT)-like metasurface (GrE & MS). Dynamic modulation is realized by applying three stimulus modes of optical pump, bias voltage, and optical pump–bias voltage combination. With increasing luminous flux or bias voltage, the transmission amplitude undergoes two stages: increasing and decreasing, because the graphene Fermi level shifts between the valence band, Dirac point, and conduction band. Thus, an approximate position of the Dirac point can be evaluated by the transmission spectrum fluctuation. The maximum modulation depth is measured to be 182% under 1 V. These findings provide a method for designing ultrasensitive terahertz modulation devices.

Funder

Anhui Provincial Department of Housing and Urban-Rural Development

Anhui University of Science and Technology

Natural Science Foundation of Shandong Province

National Natural Science Foundation of China

National Key Research and Development Program of China

the Qingchuang Science and Technology Plan of Shandong Universities

Taishan Scholar Project of Shandong Province

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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