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首页> 外文期刊>Journal of optics >Ultra-thin optical vortex phase plate based on the metasurface and the angular momentum transformation
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Ultra-thin optical vortex phase plate based on the metasurface and the angular momentum transformation

机译:基于超表面和角动量变换的超薄光学涡旋相板

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摘要

The ultra-thin optical vortex phase plate (VPP) has been designed and investigated based on the metasurface of the metal rectangular split-ring resonators (MRSRRs) array. The circularly polarized incident light can convert into corresponding cross-polarization transmission light, and the phase and the amplitude of cross-polarization transmission light can be simultaneously governed by modulating two arms of the MRSRR. The MRSRR has been arranged in a special order for forming an ultra-thin optical VPP that can covert a plane wave into a vortex beam with a variety of the topological charges, and the transformation between spin angular momentum (SAM) and orbital angular momentum (OAM) has been discussed in detail. The multi-spectral characteristics of the VPP have also been investigated, and the operating bandwidth of the designed VPP is 190 nm (in the range of 710-900 nm), which enable a potential implication for integrated optics and vortex optics.
机译:基于金属矩形开口环谐振器(MRSRRs)阵列的超表面,设计和研究了超薄光学涡旋相位板(VPP)。圆偏振入射光可以转换为相应的交叉偏振透射光,并且可以通过调制MRSRR的两个臂来同时控制交叉偏振透射光的相位和幅度。 MRSRR已按特殊顺序排列以形成超薄光学VPP,该VPP可以将平面波转换为具有多种拓扑电荷的涡旋束,并实现自旋角动量(SAM)和轨道角动量之间的转换( OAM)已进行了详细讨论。还已经研究了VPP的多光谱特性,设计的VPP的工作带宽为190 nm(在710-900 nm范围内),这对集成光学和涡旋光学具有潜在的影响。

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