论文标题
用于光学镊子中二维颗粒操作的全丝硅金属
All-dielectric silicon metalens for two-dimensional particle manipulation in optical tweezers
论文作者
论文摘要
对紧凑型芯片尺度对生物科学应用的颗粒的非接触式操纵的动态控制仍然是一项具有挑战性的努力,这受到捕获效率和可扩展设备之间的平衡的限制。 Metasurfaces在平面平台上提供了可行的光学镊子的实现,用于通过微观集成设备来塑造施加的光学力。在这里,我们设计并在实验上展示了一种高效的基于硅的金属,用于近红外的二维光学诱捕。我们的Metalens概念基于Pancharatnam-Berry相,该相可以实现极化敏感的颗粒操作。我们的光学诱捕设置能够在三个方向上自由地调节元面镜头和粒子室的位置,这为光学陷阱调整和对齐提供了极大的自由度。二维(2D)粒子操作是使用相对较低的数值孔径金属($ na_ {ml} = 0.6 $)完成的。我们在实验上证明了悬浮在水中的聚苯乙烯颗粒的2D极化敏感的阻力操纵,以及将角轨道动量转移到具有单个定制梁的这些颗粒中。我们的工作可能为生物科学应用的实验室光学捕获和微观旋转夹夹提供了新的可能性。
Dynamic control of compact chip-scale contactless manipulation of particles for bioscience applications remains a challenging endeavor, which is restrained by the balance between trapping efficiency and scalable apparatus. Metasurfaces offer the implementation of feasible optical tweezers on a planar platform for shaping the exerted optical force by a microscale-integrated device. Here, we design and experimentally demonstrate a highly efficient silicon-based metalens for two-dimensional optical trapping in the near-infrared. Our metalens concept is based on the Pancharatnam-Berry phase, which enables the device for polarization-sensitive particle manipulation. Our optical trapping setup is capable of adjusting the position of both the metasurface lens and the particle chamber freely in three directions, which offers great freedom for optical trap adjustment and alignment. Two-dimensional (2D) particle manipulation is done with a relatively low numerical aperture metalens ($NA_{ML}=0.6$). We experimentally demonstrate both 2D polarization sensitive drag and drop manipulation of polystyrene particles suspended in water and transfer of angular orbital momentum to these particles with a single tailored beam. Our work may open new possibilities for lab-on-a-chip optical trapping for bioscience applications and micro to nanoscale optical tweezers.