Light propelled artificial micro-machines

Matthias Rüschenbaum, Naja Burczyk, Julian Jeggle, Jonas Hallekamp, C. Denz, R. Wittkowski
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Abstract

Among the numerous propulsion mechanisms developed in the past to self-propelled nano- and micro particles, light-driven machines are most promising, since they enable a natural spatio-temporal control of the motion. We report a novel fuel-free propulsion mechanism induced by an external light stimulus. The actuation relies on refraction of light, while the net propulsion force emerges from an asymmetric particle shape and a symmetry-broken refractive index profile. Two-photon polymerization is employed for fabrication of the artificial machines, whose geometries and refractive index profiles are optimized with the help of numerical simulations. We demonstrate the directional movement of refractive light-propelled particles, and the increased performance of artificial refractive index machines.
光推动人工微型机器
在过去开发的众多推进机制中,自推进的纳米和微粒子,光驱动机器是最有前途的,因为它们能够实现自然的时空运动控制。我们报道了一种由外部光刺激诱导的新型无燃料推进机制。驱动依赖于光的折射,而净推进力来自于不对称的粒子形状和对称破碎的折射率剖面。采用双光子聚合法制备了人工机械,并通过数值模拟对其几何形状和折射率曲线进行了优化。我们展示了折射光推进粒子的定向运动,以及人工折射率仪性能的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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