利用光纤纳米镊子捕获微纳米粒子

Jean-Baptiste Decombe, G. Dantelle, T. Gacoin, F. Valdivia-Valero, G. Colas des Francs, S. Huant, J. Fick
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引用次数: 3

摘要

我们提出了一种双光纤尖端光镊在水悬浮液中稳定捕获300 nm掺铈YAG发光粒子。采用特定的糖热合成路线以及原始的保护退火步骤来制备颗粒。我们得到了沿光纤轴横向方向的谐波阱电位。在纵向上,势在距离约为俘获激光波长一半处的分布统计中表现出一定的子结构。我们计算了36 pN•μm-1W-1的强度归一化捕获刚度。这些结果与先前的微粒捕获工作进行了比较,并通过基于有限元方法的数值模拟进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Micro- and nano-particle trapping using fibered optical nano-tweezers
We present the stable trapping of luminescent 300-nm cerium-doped YAG particles in aqueous suspension using a dual fiber tip optical tweezers. The particles were elaborated using a specific glycothermal synthesis route together with an original protected annealing step. We obtained harmonic trap potentials in the direction transverse to the optical fiber axes. In the longitudinal direction, the potential shows some sub-structure revealed by two peaks in the distribution statistics with a distance of about half the wavelength of the trapping laser. We calculated intensity normalized trapping stiffness of 36 pN•μm-1W-1. These results are compared to previous work of microparticle trapping and discussed thanks to numerical simulations based on finite element method.
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