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电可调谐超表面实现近红外波长三态动态偏振切换。

Electro-tunable metasurface for tri-state dynamic polarization switching at near-infrared wavelengths.

机构信息

Department of Electronics and Electrical Engineering, Indian Institute of Technology Guwahati, Assam 781039, India.

出版信息

J Phys Condens Matter. 2023 Jul 4;35(39). doi: 10.1088/1361-648X/ace01b.

Abstract

Control of polarization states of light is crucial for any photonic system. However, conventional polarization-controlling elements are typically static and bulky. Metasurfaces open a new paradigm to realize flat optical components by engineering meta-atoms at sub-wavelength scale. Tunable metasurfaces can provide enormous degrees-of-freedom to tailor electromagnetic properties of light and thus have the potential to realize dynamic polarization control in nanoscale. In this study, we propose a novel electro-tunable metasurface to enable dynamic control of polarization states of reflected light. The proposed metasurface comprises a two-dimensional array of elliptical Ag-nanopillars deposited on indium-tin-oxide (ITO)-AlO-Ag stack. In unbiased condition, excitation of gap-plasmon resonance in the metasurface leads to rotation of-polarized incident light to orthogonally polarized reflected light (i.e.,-polarized) at 1.55m. On the other hand, by applying bias-voltage, we can alter the amplitude and phase of the electric field components of the reflected light. With 2 V applied bias, we achieved a linearly polarized reflected light with a polarization angle of -45°. Furthermore, we can tune the epsilon-near-zero wavelength of ITO at the vicinity of 1.55m wavelength by increasing the bias to 5 V, which reduces-component of the electric field to a negligible amplitude, thus, resulting in an-polarized reflected light. Thus, with an-polarized incident wave, we can dynamically switch among the three linear polarization states of the reflected wave, allowing a tri-state polarization switching (viz.-polarization at 0 V, -45° linear polarization at 2 V, and-polarization at 5 V). The Stokes parameters are also calculated to show a real-time control over light polarization. Thus, the proposed device paves the way toward the realization of dynamic polarization switching in nanophotonic applications.

摘要

光的偏振态控制对于任何光子系统都至关重要。然而,传统的偏振控制元件通常是静态的且体积庞大。超表面通过在亚波长尺度上设计亚波长元开辟了实现平板光学元件的新范例。可调谐超表面可以提供巨大的自由度来调整光的电磁特性,从而有可能在纳米尺度上实现动态偏振控制。在本研究中,我们提出了一种新颖的电控可调谐超表面,以实现反射光偏振态的动态控制。所提出的超表面由沉积在氧化铟锡(ITO)-AlO-Ag 堆叠上的二维椭圆 Ag 纳米柱阵列组成。在无偏压条件下,超表面中的间隙等离子体激元共振激发会导致入射的线偏振光旋转到正交偏振的反射光(即线偏振光),在 1.55m 处。另一方面,通过施加偏压,我们可以改变反射光的电场分量的幅度和相位。施加 2V 偏压时,我们实现了线偏振反射光,其偏振角为-45°。此外,通过将偏压增加到 5V,我们可以将 ITO 的近零介电常数波长调谐到 1.55m 附近,从而将电场分量的幅度降低到可忽略的水平,从而导致线偏振反射光。因此,对于线偏振入射光,我们可以在反射光的三个线性偏振态之间动态切换,从而实现三态偏振切换(即 0V 时为线偏振,2V 时为-45°线性偏振,5V 时为线偏振)。还计算了斯托克斯参数以显示对光偏振的实时控制。因此,所提出的器件为在纳米光子应用中实现动态偏振切换铺平了道路。

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