Cheng GongNan ZhangZijie DaiWeiwei Liu
We suggest and demonstrate the concept of optical programmable metamaterials which can configure the device's electromagnetic parameters by the programmable optical stimuli. In such metamaterials, the optical stimuli produced by a FPGA controlled light emitting diode array can switch or combine the resonance modes which are coupled in. As an example, an optical programmable metamaterial terahertz absorber is proposed. Each cell of the absorber integrates four meta-rings (asymmetric 1/4 rings) with photo-resistors connecting the critical gaps. The principle and design of the metamaterials are illustrated and the simulation results demonstrate the functionalities for programming the metamaterial absorber to change its bandwidth and resonance frequency.
Rui Yuan WuLiang WuShi HeShuo LiuTie Jun Cui
Tie Jun CuiMei Qing QiXiang WanJie ZhaoQiang Cheng
Bastiaan FlorijnCorentin CoulaisMartin van Hecke
Babak HaghpanahHamid EbrahimiDavood MousanezhadJonathan B. HopkinsAshkan Vaziri