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Two-state switchable plasmonic tweezers for dynamic manipulation of nano-objects

机译:两国可切换的电浆镊子动态操纵nano-objects

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摘要

In this work, we present a plasmonic platform capable of trapping nano-objects in two different spatial configurations. The switch between the two trapping states, localized on the tip and on the outer wall of a vertical gold nanochannel, can be activated by varying the focusing position of the excitation laser along the main axis of the nanotube. We show that the switching of the trapping site is induced by changes in the distribution of the electromagnetic field and of the trapping force. The "inner" and "outer" trapping states are characterized by a static and a dynamic behavior respectively, and their stiffness is measured by analyzing the positions of the trapped specimens as a function of time. In addition, we demonstrate that the stiffness of the static state is high enough to trap particles with diameter as small as 40 nm. These results show a simple, controllable way to generate a switchable two-state trapping regime, which could be used as a model for the study of dynamic trapping or as a mechanism for the development of nanofluidic devices.
机译:在这项工作中,我们提出一个电浆平台nano-objects被困在两个不同的能力空间配置。捕获的两个州,本地化的提示一个垂直的外墙金纳米通道,可以激活不同的聚焦位置激发激光的主要轴线碳纳米管。捕获网站的变化引起的电磁场的分布的捕获力。捕获状态是由一个静态和特点动态行为分别和他们刚度测量通过分析位置被困的标本作为时间的函数。此外,我们证明的刚度静态足够高陷阱粒子与直径小至40 nm。生成一个显示一个简单的、可控的方式可切换的两国政权被困,这可能被用作模型研究动态捕获或机制的发展奈米流体设备。

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