Han Donghai, Zhang Liuyang, Chen Xuefeng
Opt Express. 2021 Oct 11;29(21):32853-32864. doi: 10.1364/OE.437459.
Reconfigurable metamaterials have attracted a surge of attention for their formidable capability to dynamically manipulate the electromagnetic wave. Among the multifarious modulation methods, mechanical deformation is widely adopted to tune the electromagnetic response of the stereotype metamaterial owing to its straightforward and continuous controllability on the metamaterial structure. However, previous morphologic reconfigurations of metamaterials are typically confined in planar deformation that renders limited tunable functionalities. Here we have proposed a novel concept of out-of-plane deformation to broaden the functionalities of mechanically reconfigurable metamaterials via introducing a cross-shaped metamaterial. Our results show that the out-of-plane mechanical modulation dramatically enhances the magnetic response of the pristine metamaterial. Furthermore, by uncrossing the bars of cross-shaped meta-atoms, a L-shaped metamaterial is proposed to verify the effectiveness of such a mechanical method on the handedness switching via changing mechanical loading-paths. More importantly, the differential transmission for circularly polarized incidences can be continuously modulated from -0.45 to 0.45, and the polarization states of the transmission wave can be dynamically manipulated under the linearly polarized illumination. Our proposed mechanical modulation principle might open a novel avenue toward the three-dimensional reconfigurable metamaterials and shows their ample applications in the areas of chiroptical control, tunable polarization rotator and converter.
可重构超材料因其动态操纵电磁波的强大能力而引起了广泛关注。在众多调制方法中,机械变形由于其对超材料结构具有直接且连续的可控性,被广泛用于调节定型超材料的电磁响应。然而,先前超材料的形态重构通常局限于平面变形,这使得可调功能有限。在此,我们提出了一种新颖的面外变形概念,通过引入一种十字形超材料来拓宽机械可重构超材料的功能。我们的结果表明,面外机械调制显著增强了原始超材料的磁响应。此外,通过解开十字形元原子的横杆,提出了一种L形超材料,以验证这种机械方法通过改变机械加载路径实现手性切换的有效性。更重要的是,圆偏振入射的差分传输可以在-0.45至0.45之间连续调制,并且在线偏振照明下可以动态操纵传输波的偏振态。我们提出的机械调制原理可能为三维可重构超材料开辟一条新途径,并展示其在旋光控制、可调偏振旋转器和转换器等领域的广泛应用。