论文标题
从双曲线超材料谐振器中电磁能的有效辐射超出耦合
Efficient radiational outcoupling of electromagnetic energy from hyperbolic metamaterial resonators
论文作者
论文摘要
最初在光学元件中提出了双曲线材料,以提高量子发射器的辐射效率。对天线设计采用这一概念可以允许在无线电物理学中面临长期的挑战。例如,在需要宽带操作时,阻抗匹配和增益是最具挑战性的天线参数之一。在这里,我们基于双曲线的超材料平板,在这里亲po和数值分析新的紧凑型天线设计,顶部有一个图案化的层。从亚波循环天线发出的能量被证明可以在较大的频率范围内有效收集到超材料的散装模式中。由于双曲线类型的有效渗透率张量,培养基内高度局部的传播波具有良好的空间间隔。色彩色散和模态分散之间的这种强相互作用可以将不同的频率路由到紧凑的亚波长几何形状内的不同空间位置。将一系列非重叠的谐振元件放置在超材料层上,并提供了与自由空间辐射的局部电磁能相匹配。结果,预测设备线性增益的两阶改进。提出的新体系结构可以在需要多台或宽带紧凑型设备的应用中找到用途。
Hyperbolic metamaterials were initially proposed in optics to boost radiation efficiencies of quantum emitters. Adopting this concept for antenna design can allow approaching long-standing challenges in radio physics. For example, impedance matching and gain are among the most challenging antenna parameters to achieve in case when a broadband operation is needed. Here we pro-pose and numerically analyse a new compact antenna design, based on hyperbolic metamaterial slab with a patterned layer on top. Energy from a subwavelength loop antenna is shown to be efficiently harvested into bulk modes of the metamaterial over a broad frequency range. Highly localized propagating waves within the medium have a well-resolved spatial-temporal separation owing to the hyperbolic type of effective permeability tensor. This strong interplay between chromatic and modal dispersions enables routing different frequencies into different spatial locations within compact subwavelength geometry. An array of non-overlapping resonant elements is placed on the metamaterial layer and provides a superior matching of localized electromagnetic energy to the free space radiation. As the result, two-order of magnitude improvement in linear gain of the device is predicted. The proposed new architecture can find a use in applications, where multiband or broadband compact devices are required.