Kang Lei, Zhao Qian, Zhao Hongjie, Zhou Ji
State Key Laboratory of New Ceramics and Fine Processing, Department of Materials Science and Engineering, Tsinghua University, Beijing 100084, People's Republic of China.
Opt Express. 2008 Jun 9;16(12):8825-34. doi: 10.1364/oe.16.008825.
We experimentally demonstrate a tunable negative permeability metamaterial (NPM) at microwave frequencies by introducing yttrium iron garnet (YIG) rods into a periodic array of split ring resonators (SRRs). Different from those tuned by controlling the capacitance of equivalent LC circuit of SRR, this metamaterial is based on a mechanism of magnetically tuning the inductance via the active ambient effective permeability. For magnetic fields from 0 to 2000 Oe and from 3200 to 6000 Oe, the resonance frequencies of the metamaterial can blueshift about 350 MHz and redshift about 315 MHz, respectively. Both shifts are completely continuous and reversible. Correspondingly, the tunable negative permeabilities are widened by about 360 MHz and 200 MHz compared to that without YIG rods.
我们通过将钇铁石榴石(YIG)棒引入分裂环谐振器(SRR)的周期性阵列中,在微波频率下通过实验证明了一种可调谐的负磁导率超材料(NPM)。与那些通过控制SRR等效LC电路的电容进行调谐的材料不同,这种超材料基于一种通过有源环境有效磁导率对电感进行磁调谐的机制。对于0至2000奥斯特以及3200至6000奥斯特的磁场,超材料的共振频率分别可以蓝移约350兆赫兹和红移约315兆赫兹。这两种频移都是完全连续且可逆的。相应地,与没有YIG棒的情况相比,可调谐负磁导率拓宽了约360兆赫兹和200兆赫兹。