论文标题
在液晶液滴上,用于实验室的芯片光电机的微型金属镊子的微型金属镊子
Miniaturized Metalens Based Optical Tweezers on Liquid Crystal Droplets for Lab-on-a-Chip Optical Motors
论文作者
论文摘要
最近已被证明能够完全控制光阶段的表面,这些表面被超薄纳米annna结构(所谓的元整日)结构覆盖。金属镜从发展的发展中出现了,从而为将传统镜片重新铸造成能够聚焦光线的薄,平面光学组件提供了新的基础。使用电子束光刻在玻璃基板上制造了由等离子体金纳米棒阵列制成的镜头。使用1064 nm激光器通过焦距800 $ $ m,$ n.a的金属长度来创建高强度的圆形光焦点。 = 0.6 $根据Pancharatnam-berry相原理制造。我们证明了通过这种金属的双折射夜间液晶液滴的光旋流。双向液滴的旋转确信,光学陷阱具有足够强大的角动量,从每种纳米结构的辐射中,表现为局部半波浪板,并引入了方向依赖于光相。在这里,我们显示了创建一个小型且坚固的金属型镊子系统的成功,能够旋转液晶液滴,以模仿光电动机,以供将来的实验室芯片芯片应用。
Surfaces covered with layers of ultrathin nanoantenna structures, so-called metasurfaces, have recently been proven capable of completely controlling phase of light. Metalenses have emerged from the advance in the development of metasurfaces providing a new basis for recasting traditional lenses into thin, planar optical components capable of focusing light. The lens made of arrays of plasmonic gold nanorods were fabricated on a glass substrate by using electron beam lithography. A 1064 nm laser was used to create a high intensity circularly polarized light focal spot through metalens of focal length 800 $μ$m, $N.A. = 0.6$ fabricated based on Pancharatnam-Berry phase principle. We demonstrated that optical rotation of birefringent nematic liquid crystal droplets trapped in the laser beam was possible through this metalens. The rotation of birefringent droplets convinced that the optical trap possesses strong enough angular momentum of light from radiation of each nanostructure acting like a local half waveplate and introducing an orientation-dependent phase to light. Here, we show the success in creating a miniaturized and robust metalens based optical tweezers system capable of rotating liquid crystals droplets to imitate an optical motor for future lab-on-a-chip applications.