论文标题
磁性可调的零索引超材料
Magnetically tunable zero-index metamaterials
论文作者
论文摘要
零索引超材料(ZIMS)在任意形状的大面积上具有均匀的电磁模式,这使许多应用程序都可以使用任意形状的高转移超级耦合器,非线性光学仪器的方向独立相匹配,以及许多量子发射器的集体发射。但是,到目前为止,大多数ZIM是被动的,没有动态调节电磁特性的方法。在这里,我们设计并制造了一个可磁性的Zim,该Zim由夹在微波炉状态下的两个铜覆盖层之间的Yttrium Iron Garnet(YIG)支柱组成。通过利用Yig的棉花效应,超材料在无间隙和带隙状态之间成功切换,从而导致零索引相和超材料的单个负相之间的“相变”。使用S形Zim超级耦合器,我们在实验上证明了可调超耦合状态,其内在损失低0.95 dB,而在9 GHz时的高消光比高达30.63 dB。我们的工作实现了Zims电磁特性的动态调制,从而在可调线性,非线性,量子和非雷神电磁器件中实现了各种应用。
Zero-index metamaterials (ZIMs) feature a uniform electromagnetic mode over a large area in arbitrary shapes, enabling many applications including high-transmission supercouplers with arbitrary shapes, direction-independent phase matching for nonlinear optics, and collective emission of many quantum emitters. However, most ZIMs reported till date are passive, with no method for the dynamic modulation of their electromagnetic properties. Here, we design and fabricate a magnetically tunable ZIM consisting of yttrium iron garnet (YIG) pillars sandwiched between two copper clad laminates in the microwave regime. By harnessing the Cotton-Mouton effect of YIG, the metamaterial was successfully toggled between gapless and bandgap states, leading to a "phase transition" between a zero-index phase and a single negative phase of the metamaterial. Using an S-shaped ZIM supercoupler, we experimentally demonstrated a tunable supercoupling state with a low intrinsic loss of 0.95 dB and a high extinction ratio of up to 30.63 dB at 9 GHz. Our work enables dynamic modulation of the electromagnetic characteristics of ZIMs, enabling various applications in tunable linear, nonlinear, quantum and nonreciprocal electromagnetic devices.