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Light-driven transport of plasmonic nanoparticles on demand

机译:随需随行的等离子纳米粒子的光驱动传输

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摘要

Laser traps provide contactless manipulation of plasmonic nanoparticles (NPs) boosting the development of numerous applications in science and technology. The known trapping configurations allow immobilizing and moving single NPs or assembling them, but they are not suitable for massive optical transport of NPs along arbitrary trajectories. Here, we address this challenging problem and demonstrate that it can be handled by exploiting phase gradients forces to both confine and propel the NPs. The developed optical manipulation tool allows for programmable transport routing of NPs to around, surround or impact on objects in the host environment. An additional advantage is that the proposed confinement mechanism works for off-resonant but also resonant NPs paving the way for transport with simultaneous heating, which is of interest for targeted drug delivery and nanolithography. These findings are highly relevant to many technological applications including micro/nano-fabrication, micro-robotics and biomedicine.
机译:激光陷阱提供了对等离子体纳米粒子(NPs)的非接触式操纵,从而推动了科学和技术领域众多应用的发展。已知的捕获配置允许固定和移动单个NP或组装它们,但它们不适合沿着任意轨迹大规模地NP光学传输。在这里,我们解决了这一具有挑战性的问题,并证明可以通过利用相位梯度力来限制和推进NP来解决该问题。开发的光学操纵工具允许将NP编程传输到周围环境,周围环境或对宿主环境中的物体施加影响的路由。另一个优点是,所提出的限制机制适用于非共振但共振的NP,从而为同时加热的运输铺平了道路,这对于靶向药物递送和纳米平版印刷术很有意义。这些发现与许多技术应用高度相关,包括微/纳米加工,微机器人技术和生物医学。

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