Zhengyong Song, Zhisheng Wang, Maoliang Wei,
https://www.sciencedirect.com/science/article/pii/S0167577X18314629
A broadband tunable absorber is studied based on the silicon metasurface at terahertz frequencies. By tuning the conductivity of silicon, absorptance is more than 90% from 0.497 THz to 1.045 THz with central frequency of 0.771 THz when the conductivity is equal to . Simulated results show that absorptance peak can be modulated from 1% to 100% when the conductivity continuously changes from to . The central-symmetry structure leads to polarization independence. Our design may be used as optoelectronic modulator, tunable detector, and terahertz switch.
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