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Optical Fiber Nano-Tweezers, a complementary approach for Micro- and Nanoparticle Trapping

机译:光纤纳米镊子,微型和纳米粒子捕获的互补方法

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We report stable and reproducible trapping of different micro and nanoparticles using a far field dual fiber tip optical tweezers. The tweezers properties are analyzed by studying the trapped particles residual Brownian motion. The trapping potential is harmonic and the trapping forces in transverse direction are typically three times larger with respect to axial direction. Interference fringe trapping is observed for 300 nm YAG particles. Depending on their length, NaYF_4 nanorods are trapped in single or dual fiber tip configurations. Longest rods could be trapped with one single fiber tip at 5 μm away from tip. The experimental results are discussed using numerical simulations based on exact Maxwell Stress Tensor approach.
机译:我们使用远场双光纤尖端光学镊子报告不同微型和纳米颗粒的稳定和可重复的诱捕。通过研究被困粒子残留的布朗运动来分析镊子性质。捕获电位是谐波,并且横向的捕获力通常相对于轴向较大三倍。观察到干涉条纹捕获300nm YAG颗粒。根据其长度,Nayf_4纳米棒被捕获在单一或双光纤尖端配置中。最长的杆可以捕获一个单纤维尖端,距尖端5μm。使用基于精确的麦克斯韦压力张量方法的数值模拟讨论了实验结果。

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