论文标题

来自无旋光的光学幻影

Optical mirages from spinless beams

论文作者

Olmos-Trigo, Jorge, Abujetas, Diego R., Sanz-Fernández, Cristina, García-Etxarri, Aitzol, García-Martín, Antonio

论文摘要

光的自旋轨道相互作用在纳米素质的多个分支中无处不在,包括光波定位。在该框架中,人们广泛接受的是,圆极化梁导致偶极靶标的自旋依赖性明显移位通常称为光幻想。相比之下,当照明来自无旋光梁(例如线性极化波)时,这些光幻想消失了。在这里,我们表明,在无旋光束的照明下,在电气和磁性偶极响应的颗粒中出现了光学定位误差。例如,我们在线性极化平面波的照明下计算出高折射率纳米圈散射的光影,该光段带有无旋转旋转,轨道和总角动量。我们的结果表明,电偶极和磁性偶极子之间的干扰是光的旋转轨道相互作用,作为纳米球倾斜位置的起源。

Spin-orbit interactions of light are ubiquitous in multiple branches of nanophotonics, including optical wave localization. In that framework, it is widely accepted that circularly polarized beams lead to spin-dependent apparent shifts of dipolar targets commonly referred to as optical mirages. In contrast, these optical mirages vanish when the illumination comes from a spinless beam such as a linearly polarized wave. Here we show that optical localization errors emerge for particles sustaining electric and magnetic dipolar response under the illumination of spinless beams. As an example, we calculate the optical mirage for the scattering by a high refractive index nanosphere under the illumination of a linearly polarized plane wave carrying null spin, orbital, and total angular momentum. Our results point to an overlooked interference between the electric and magnetic dipoles rather than the spin-orbit interactions of light as the origin for the tilted position of the nanosphere.

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