Lee E, Luo T
Department of Aerospace and Mechanical Engineering, University of Notre Dame, Notre Dame, IN, USA.
Department of Chemical and Biomolecular Engineering, University of Notre Dame, Notre Dame, IN, USA.
Sci Adv. 2020 May 20;6(21):eaaz3646. doi: 10.1126/sciadv.aaz3646. eCollection 2020 May.
Optical pulling force (OPF) can make a nanoparticle (NP) move against the propagation direction of the incident light. Long-distance optical pulling is highly desired for nano-object manipulation, but its realization remains challenging. We propose an NP-in-cavity structure that can be pulled by a single plane wave to travel long distances when the spherical cavity wrapping the NP has a refractive index lower than the medium. An electromagnetic multipole analysis shows that NPs made of many common materials can receive the OPF inside a lower index cavity. Using a silica-Au core-shell NP that is encapsulated by a plasmonic nanobubble, we experimentally demonstrate that a single laser can pull the Au NP-in-nanobubble structure for ~0.1 mm. These results may lead to practical applications that can use the optical pulling of NP, such as optically driven nanostructure assembly and nanoswimmers.
光拉力(OPF)可使纳米颗粒(NP)逆着入射光的传播方向移动。长距离光牵引对于纳米物体操纵非常有必要,但实现起来仍具有挑战性。我们提出了一种腔内纳米颗粒结构,当包裹纳米颗粒的球形腔的折射率低于介质时,该结构可被单个平面波拉动以进行长距离移动。电磁多极分析表明,许多常见材料制成的纳米颗粒在较低折射率腔内可受到光拉力。通过使用由等离子体纳米气泡封装的二氧化硅-金核壳纳米颗粒,我们通过实验证明单个激光可将纳米气泡中的金纳米颗粒结构拉动约0.1毫米。这些结果可能会带来可利用纳米颗粒光牵引的实际应用,如光驱动纳米结构组装和纳米游泳器。