Petronijevic Emilija, Cesca Tiziana, Scian Carlo, Mattei Giovanni, Li Voti Roberto, Sibilia Concita, Belardini Alessandro
Department SBAI, Sapienza University of Roma, Via A. Scarpa 14, I-00161 Rome, Italy.
University of Padova, Department of Physics and Astronomy, NanoStructures Group, via Marzolo 8, I-35131 Padova, Italy.
Nanoscale. 2024 Sep 12;16(35):16477-16484. doi: 10.1039/d3nr06085c.
Metasurfaces tailor electromagnetic confinement at the nanoscale and can be appropriately designed for polarization-dependent light-matter interactions. Adding the asymmetry degree to the desing allows for circular polarizations of opposite handedness to be differently absorbed or emitted, which is of interest in fields spanning from chiral sensing to flat optics. Here, we show that simple, low-cost asymmetric metasurfaces can control Stokes parameters in the transmitted far-field. With only 50 nm of asymmetric plasmonic shells on self-assembled polystyrene nanospheres, our metasurfaces allow for great spectral and incident angle tunability. We first investigated broadband extrinsic chirality in metasurfaces with asymmetric plasmonic semishells; we found high extinction circular dichroism (CD) in the near-infrared range. We then excited it with linear polarization and performed hyperspectral Stokes polarimetry on the transmitted field. We showed that the S parameter follows the behavior of CD in extinction, and that the output field position on the Poincaré sphere can be widely controlled by using the incidence angle and wavelength. Furthermore, simulations agreed well with the experiments and showed how the near-field chiro-optical response influences the extrinsic chiral behavior in absorption and the polarization state of the transmitted field.
超表面可在纳米尺度上定制电磁约束,并且可以进行适当设计以实现与偏振相关的光与物质相互作用。在设计中加入不对称度可使相反手性的圆偏振光被不同程度地吸收或发射,这在从手性传感到平面光学等诸多领域都备受关注。在此,我们展示了简单、低成本的不对称超表面能够控制透射远场中的斯托克斯参数。在自组装的聚苯乙烯纳米球上仅添加50纳米厚的不对称等离子体壳层,我们的超表面就具有出色的光谱和入射角可调性。我们首先研究了具有不对称等离子体半壳层的超表面中的宽带外在手性;我们在近红外范围内发现了高消光圆二色性(CD)。然后我们用线偏振光激发它,并对透射场进行高光谱斯托克斯偏振测量。我们表明,S参数在消光时遵循CD的行为,并且通过使用入射角和波长,可以广泛控制庞加莱球上的输出场位置。此外,模拟结果与实验结果吻合良好,展示了近场手性光学响应如何影响吸收中的外在手性行为以及透射场的偏振态。