论文标题
实现非注射磁光异质结构中宽带索引零零模式
Realization of broadband index-near-zero modes in nonreciprocal magneto-optical heterostructures
论文作者
论文摘要
在过去的几十年中,Epsilon-near-Zero(ENZ)超材料的相对介电常数接近零是一个热门研究主题。 ENZ区域的波浪具有无限的相速度($ v = 1/\ sqrt {\varepsilonμ} $),而由于阻抗不匹配或接近零组的速度,它无法有效地进入其他设备或空气。在本文中,我们证明了具有消失的波数($ k = 0 $)和非零组速度($ v_ \ mathrm {g} \ neq 0 $)的可调索引 - 零元素(inz)模式。这种INZ模式已在Dirac Point频率下的光子晶体中实验证明,并且也观察到了阻抗匹配效果。我们的理论分析表明,在更改单向(非逆局)波导的参数时,INZ模式显示出可调性。此外,由于INZ模式的零相变特性和减少$ v_ \ mathrm {g} $,因此在微波炉和Terahertz机制中提出了几个完美的光缓冲区(POB)。通过有限元方法执行的数值模拟进一步验证了理论结果。我们的发现可能打开了在Ultra -Strong或-fast非线性,完美的隐身,高分辨率全息成像和无线通信领域的研究的新途径。
Epsilon-near-zero (ENZ) metamaterial with the relative permittivity approaching zero has been a hot research subject in the past decades. The wave in the ENZ region has infinite phase velocity ($v=1/\sqrt{\varepsilonμ}$), whereas it cannot efficiently travel into the other devices or air due to the impedance mismatch or near-zero group velocity. In this paper, we demonstrate that the tunable index-near-zero (INZ) modes with vanishing wavenumbers ($k=0$) and nonzero group velocities ($v_\mathrm{g} \neq 0$) can be achieved in nonreciprocal magneto-optical systems. This kind of INZ modes has been experimentally demonstrated in the photonic crystals at Dirac point frequencies and that impedance-matching effect has been observed as well. Our theoretical analysis reveals that the INZ modes exhibit tunability when changing the parameter of the one-way (nonreciprocal) waveguides. Moreover, owing to the zero-phase-shift characteristic and decreasing $v_\mathrm{g}$ of the INZ modes, several perfect optical buffers (POBs) are proposed in the microwave and terahertz regimes. The theoretical results are further verified by the numerical simulations performed by the finite element method. Our findings may open the new avenues for research in the areas of ultra -strong or -fast nonlinearity, perfect cloaking, high-resolution holographic imaging and wireless communications.