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采用2微米掺铥光纤激光器对微米和纳米粒子进行光热泳捕获。

Opto-thermophoretic trapping of micro and nanoparticles with a 2 µm Tm-doped fiber laser.

作者信息

Mamuti Roukuya, Fuji Takao, Kudo Tetsuhiro

出版信息

Opt Express. 2021 Nov 8;29(23):38314-38323. doi: 10.1364/OE.440866.

Abstract

We propose a method for opto-thermophoretic trapping with a 2 µm Tm-doped fiber laser. The infrared continuous-wave laser beam is directly and strongly absorbed by water solution, and some local temperature gradient is generated around a focus. The particles are migrated along the temperature gradient, and form a hexagonal close-packed structure at a bottom-glass solution interface. On the other hand, the particles are not trapped in heavy water which does not absorb 2 µm light. The fact indicates that the local temperature elevation is the origin of this phenomenon. We have investigated the dependence of the phenomenon on the material, particle size, and laser power. To the best of our knowledge, 2 µm is the longest wavelength used for the opto-thermophoretic trapping.

摘要

我们提出了一种利用2微米掺铥光纤激光器进行光热泳捕获的方法。红外连续波激光束被水溶液直接且强烈地吸收,在焦点周围产生一些局部温度梯度。粒子沿温度梯度迁移,并在底部玻璃 - 溶液界面处形成六方密堆积结构。另一方面,粒子不会被困在不吸收2微米光的重水中。这一事实表明局部温度升高是该现象的根源。我们研究了该现象对材料、粒径和激光功率的依赖性。据我们所知,2微米是用于光热泳捕获的最长波长。

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