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Systematic Study and Quantification of Optical Forces on Porous Silicon Nanoparticles

机译:多孔硅纳米粒子上光学力的系统研究和定量

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In this work, we report using an optical tweezers system to study the light-matter interaction and gradient optical forces of porous silicon nanoparticles. The particles are fabricated by first electrochemically etching a multi-layer porous film into a silicon wafer and then breaking up the film through ultrasonic fracturing. The particles have average pore diameters ranging from 20-30 nm. The fabricated batches of particles have diameters between approximately 100-600nm. After fabrication, the particles are size-sorted by centrifugation. A commercially available optical tweezers system is used to systematically study the optical interaction with these nanoparticles. This work opens new strategic approaches to enhance optical forces and optical sensitivity to mechanical motion that can be the basis for future biophotonics applications.
机译:在这项工作中,我们报告使用光镊系统研究多孔硅纳米粒子的光-质相互作用和梯度光学力。通过首先将多层多孔膜电化学蚀刻到硅晶片中,然后通过超声破碎将膜破碎来制造颗粒。颗粒的平均孔径为20-30nm。所制造的批次的颗粒的直径在大约100-600nm之间。制备后,通过离心对颗粒进行大小分类。使用可商购的光镊系统来系统地研究与这些纳米粒子的光学相互作用。这项工作开启了新的战略方法,以增强光学力和对机械运动的光学敏感性,这可以作为未来生物光子学应用的基础。

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