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Efficient Polarization Beam Splitter Based on All-Dielectric Metasurface in Visible Region

机译:基于全介电超表面的可见光区域高效偏振分束器

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摘要

In this paper, we present an all-dielectric gradient metasurface, composed of periodic arrangement of differently sized cross-shaped silicon nanoblocks resting on the fused silica substrate, to realize the function of polarization split in visible region. The cross-shaped silicon block arrays can induce two opposite transmission phase gradients along the x-direction for the linear x-polarization and y-polarization. By properly designing, the metasurface can separate the linearly polarized light into x- and y-polarized ones, which propagate at the same angle along the left and right sides of the normal incidence in the x-z plane. Particularly, when a beam with the polarization angle of 45.0° is incident on the proposed device, the x- and y-polarized transmitted ones possess nearly equal intensity within the wavelength range from 579 to 584 nm. We expect the proposed polarization beam splitter can play an important role for future free-space optical devices.
机译:在本文中,我们提出了一种全介电梯度超表面,其由放置在熔融石英基板上的不同尺寸的十字形硅纳米块的周期性排列组成,以实现在可见光区域中偏振分裂的功能。十字形硅块阵列可以沿x方向感应两个相反的透射相位梯度,以实现线性x极化和y极化。通过适当设计,超颖表面可以将线偏振光分离为x偏振光和y偏振光,它们沿x-z平面中法线入射的左侧和右侧以相同的角度传播。特别是,当偏振角为45.0°的光束入射到所建议的设备上时,x偏振和y偏振的透射光束在579至584 nm的波长范围内具有几乎相等的强度。我们期望所提出的偏振分束器将在未来的自由空间光学设备中发挥重要作用。

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