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Particle separation under the co-action of Brownian motion and optical force in near-field speckle patterns

机译:布朗运动和光学力共同作用下近场散斑图案中的颗粒分离

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Continuous separation of nano-sized molecules has great importance in biomedical applications. This paper represents a near-field optical approach to separate nanoparticles using speckle patterns. Near-field random light patterns (speckle pattern) are generated by the repeated coupling and interference of light in nano-waveguide arrays. The movements of 2-µm and 0.5-µm particles are studied under the co-action of Brownian motion and the exerted optical force. The experimental results show that the 2-µm particle has an average lateral displacement of 10 µm, which is considerably larger than that of the 0.5-µm particle. This method avoids the stringent optical systems and broadens the perspectives of optical manipulation in real-life applications.
机译:连续分离纳米大小的分子在生物医学应用中非常重要。本文介绍了一种利用斑点图案分离纳米颗粒的近场光学方法。近场随机光图案(斑点图案)是由纳米波导阵列中光的重复耦合和干涉产生的。在布朗运动和施加的光学力共同作用下研究了2 µm和0.5 µm粒子的运动。实验结果表明,2 µm颗粒的平均横向位移为10 µm,这比0.5 µm颗粒的平均横向位移大得多。这种方法避免了严格的光学系统,并拓宽了实际应用中光学操作的视野。

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