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Nano-optical conveyor belt with waveguide-coupled excitation

机译:具有波导耦合激发的纳米光学传送带

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We propose a plasmonic nano-optical conveyor belt for peristaltic transport of nano-particles. Instead of illumination from the top, waveguide-coupled excitation is used for trapping particles with a higher degree of precision and flexibility. Graded nano-rods with individual dimensions coded to have resonance at specific wavelengths are incorporated along the waveguide in order to produce spatially addressable hot spots. Consequently, by switching the excitation wavelength sequentially, particles can be transported to adjacent optical traps along the waveguide. The feasibility of this design is analyzed using three-dimensional finite-difference time-domain and Maxwell stress tensor methods. Simulation results show that this system is capable of exciting addressable traps and moving particles in a peristaltic fashion with tens of nanometers resolution. It is the first, to the best of our knowledge, report about a nano-optical conveyor belt with waveguide-coupled excitation, which is very important for scalability and onchip integration. The proposed approach offers a new design direction for integrated waveguide-based optical manipulation devices and its application in large scale lab-on-a-chip integration. (C) 2016 Optical Society of America
机译:我们提出了用于纳米颗粒蠕动传输的等离激元纳米光学传送带。代替从顶部进行照明,波导耦合激发用于捕获具有更高精确度和灵活性的粒子。为了产生可在空间上寻址的热点,沿着波导并入了具有各个尺寸的渐变纳米棒,这些纳米棒被编码为在特定波长下具有共振。因此,通过顺序切换激发波长,可以将粒子沿着波导传输到相邻的光阱。使用三维有限差分时域和麦克斯韦应力张量法分析了该设计的可行性。仿真结果表明,该系统能够激发具有数十纳米分辨率的蠕动方式的可寻址陷阱和移动粒子。据我们所知,这是第一篇有关具有波导耦合激励的纳米光学传送带的报告,这对于可扩展性和片上集成非常重要。提出的方法为基于集成波导的光学操纵装置及其在大规模芯片实验室集成中的应用提供了新的设计方向。 (C)2016美国眼镜学会

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