Behera Saraswati, Joseph Joby
Appl Opt. 2015 Feb 10;54(5):1212-9. doi: 10.1364/AO.54.001212.
In this work, we have designed a photonic-metamaterial based broadband circular polarizer using N=4 phase-lagged aluminum single helices arranged in a square array as a unit cell. The effect of phase differences between the helices in an array on the optical performance of the structure is studied, and a comparative study is done with that of multi-intertwined helices. It is observed that the proposed metamaterial structure shows circular polarization sensitivity over a broad optical wavelength range (≈450-900 nm), with improved optical performance in average extinction ratio and broad positive circular dichroism in comparison to multiple intertwined helices. The induced phase lag between the helices in a square-array based unit cell reduces the linear birefringence and leads to the recovery of circular space symmetry in the structure.
在这项工作中,我们设计了一种基于光子超材料的宽带圆偏振器,它使用以正方形阵列排列的N = 4个相位滞后的铝单螺旋作为单元胞。研究了阵列中螺旋之间的相位差对结构光学性能的影响,并与多缠绕螺旋进行了对比研究。结果表明,所提出的超材料结构在较宽的光学波长范围(≈450 - 900 nm)内表现出圆偏振敏感性,与多缠绕螺旋相比,其平均消光比的光学性能有所提高,并且具有宽的正圆二色性。基于正方形阵列的单元胞中螺旋之间的诱导相位滞后降低了线性双折射,并导致结构中圆空间对称性的恢复。