首页> 外文会议>Conference on Nanofabrication Technologies; Aug 3-4, 2003; San Diego, California, USA >Laser manipulation and fixation of metal nanoparticles using optical fiber probe
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Laser manipulation and fixation of metal nanoparticles using optical fiber probe

机译:使用光纤探针对金属纳米粒子进行激光处理和固定

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摘要

A laser manipulation technique for metal nanoparticles using an optical fiber has been developed. A micro ball lens adhered onto the flattened end of the optical fiber focuses a light beam propagated through a core. An object is trapped in the focused beam. An electromagnetic field distribution was numerically simulated for validation of the focusing lens. Calculation including an Au nanoparticle indicated that the laser trapping would be possible with this method. In the experiment, trapping of Au particles with diameter of 200nm was achieved by using a light source (Nd-YAG: 1064nm). The maximum trapping efficiency attained in the focal region was estimated to be 5.4fN/mW. Additionally, the fixation of a manipulated particle onto a glass substrate was also demonstrated. With intensifying the laser power, a laser-trapped particle is fixed on the substrate. By repetition of the procedure of laser manipulation and fixation, alignment of Au nanoparticles was achieved.
机译:已经开发了使用光纤的用于金属纳米颗粒的激光操纵​​技术。附着在光纤扁平端上的微型球透镜聚焦通过纤芯传播的光束。一个物体被困在聚焦光束中。数值模拟了电磁场分布,以验证聚焦透镜。包含Au纳米粒子的计算表明,使用这种方法可以进行激光陷获。在实验中,使用光源(Nd-YAG:1064nm)捕获了直径为200nm的金颗粒。在焦点区域获得的最大捕获效率估计为5.4fN / mW。另外,还证明了被操纵的颗粒固定在玻璃基板上。随着激光功率的增强,激光捕获的颗粒被固定在基板上。通过重复激光操纵和固定的过程,实现了金纳米颗粒的排列。

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