Esposito Marco, Tasco Vittorianna, Todisco Francesco, Benedetti Alessio, Tarantini Iolena, Cuscunà Massimo, Dominici Lorenzo, De Giorgi Milena, Passaseo Adriana
CNR NANOTEC - Istituto di Nanotecnologia, Polo di Nanotecnologia, c/o Campus Ecotekne, via Monteroni, 73100 Lecce, Italy.
Universitaà di Roma La Sapienza, Dip. SBAI, via Scarpa 16, 00161 Roma, Italy.
Nanoscale. 2015 Nov 21;7(43):18081-8. doi: 10.1039/c5nr04674b.
In this work, we experimentally investigate the chiro-optical properties of 3D metallic helical systems at optical frequencies. Both single and triple-nanowire geometries have been studied. In particular, we found that in single-helical nanostructures, the enhancement of chiro-optical effects achievable by geometrical design is limited, especially with respect to the operation wavelength and the circular polarization conversion purity. Conversely, in the triple-helical nanowire configuration, the dominant interaction is the coupling among the intertwined coaxial helices which is driven by a symmetric spatial arrangement. Consequently, a general improvement in the g-factor, extinction ratio and signal-to-noise-ratio is achieved in a broad spectral range. Moreover, while in single-helical nanowires a mixed linear and circular birefringence results in an optical activity strongly dependent on the sample orientation and wavelength, in the triple-helical nanowire configuration, the obtained purely circular birefringence leads to a large optical activity up to 8°, independent of the sample angle, and extending in a broad band of 500 nm in the visible range. These results demonstrate a strong correlation between the configurational internal interactions and the chiral feature designation, which can be effectively exploited for nanoscale chiral device engineering.
在这项工作中,我们通过实验研究了光学频率下三维金属螺旋系统的手性光学性质。我们研究了单纳米线和三纳米线几何结构。特别地,我们发现,在单螺旋纳米结构中,通过几何设计实现的手性光学效应增强是有限的,尤其是在工作波长和圆偏振转换纯度方面。相反,在三螺旋纳米线结构中,主要相互作用是由对称空间排列驱动的相互缠绕的同轴螺旋之间的耦合。因此,在很宽的光谱范围内,g因子、消光比和信噪比都得到了普遍提高。此外,在单螺旋纳米线中,混合的线性和圆双折射导致光学活性强烈依赖于样品取向和波长,而在三螺旋纳米线结构中,所获得的纯圆双折射导致高达8°的大光学活性,与样品角度无关,并在可见光范围内500nm的宽带中延伸。这些结果表明了构型内部相互作用与手性特征指定之间的强相关性,这可以有效地用于纳米级手性器件工程。