Tunable reflecting terahertz filter based on chirped metamaterial structure

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Abstract

Tunable reflecting terahertz bandstop filter based on chirped metamaterial structure is demonstrated by numerical simulation. In the metamaterial, the metal bars are concatenated to silicon bars with different lengths. By varying the conductivity of the silicon bars, the reflectivity, central frequency and bandwidth of the metamaterial could be tuned. Light illumination could be introduced to change the conductivity of the silicon bars. Numerical simulations also show that the chirped metamaterial structure is insensitive to the incident angle and polarization-dependent. The proposed chirped metamaterial structure can be operated as a tunable bandstop filter whose modulation depth, bandwidth, shape factor and center frequency can be controlled by light pumping.

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Yang, J., Gong, C., Sun, L., Chen, P., Lin, L., & Liu, W. (2016). Tunable reflecting terahertz filter based on chirped metamaterial structure. Scientific Reports, 6. https://doi.org/10.1038/srep38732

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