Yang Younghwan, Kim Hongyoon, Badloe Trevon, Rho Junsuk
Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea.
Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea.
Nanophotonics. 2022 May 16;11(17):4123-4133. doi: 10.1515/nanoph-2022-0075. eCollection 2022 Sep.
Tunable metasurfaces can replace conventional bulky active optical modules to realize practical flat optical devices such as lenses, LiDAR, holography, and augmented reality. However, tunable metasurfaces have generally been limited to switching between two distinct states. Here, we present liquid crystal (LC) integrated chiral metasurfaces, of which the metahologram intensity can be adjusted continuously between fully 'on' and 'off' states. The chiral metasurface consists of a gap-shifted split ring resonator (SRR), and exhibits spin angular momentum selection that reflects left-circularly-polarized light but perfectly absorbs right-circularly-polarized light (99.9%). The gap-shifted SRR realizes spin angular momentum selection using a metal-dielectric-metal multilayer structure and thereby induces a strong gap-plasmonic response, achieving the maximum calculated circular dichroism in reflection (CDR) of 0.99 at the wavelength of 635 nm. With the chiral metasurface, metaholograms are demonstrated with tunable intensities using LCs that change the polarization state of the output light using an applied voltage. With the LC integrated chiral metasurfaces, 23 steps of polarization are demonstrated for the continuous tuning of the holographic image intensity, achieving measured CDR of 0.91. The proposed LC integrated spin-selective chiral metasurface provides a new resource for development of compact active optical modules with continuously-tunable intensity.
可调谐超表面可以取代传统的大型有源光学模块,以实现诸如透镜、激光雷达、全息术和增强现实等实用的平面光学器件。然而,可调谐超表面通常仅限于在两种不同状态之间切换。在此,我们展示了液晶(LC)集成的手性超表面,其元全息图强度可以在完全“开启”和“关闭”状态之间连续调节。手性超表面由一个间隙偏移的分裂环谐振器(SRR)组成,并表现出自旋角动量选择特性,即反射左旋圆偏振光但完美吸收右旋圆偏振光(99.9%)。间隙偏移的SRR利用金属 - 介质 - 金属多层结构实现自旋角动量选择,从而诱导出强烈的间隙等离激元响应,在635 nm波长处实现了反射中计算得到的最大圆二色性(CDR)为0.99。利用手性超表面,通过使用液晶来演示可调强度的元全息图,液晶通过施加电压改变输出光的偏振态。通过液晶集成的手性超表面,展示了23步的偏振用于全息图像强度的连续调谐,实现了测量的CDR为0.91。所提出的液晶集成自旋选择性手性超表面为开发具有连续可调强度的紧凑型有源光学模块提供了一种新资源。