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Orbital Rotation of Multi-particle Arrays in a Dual-Fiber Optical Trap

机译:双纤维光学阱中多粒子阵列的轨道旋转

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We propose a new and versatile way for optical orbital rotation of microscopic sized multi-particle arrays in a transversely misaligned dual-fiber optical trap. A PDMS(Polydimethylsiloxane) chip is designed to adjust the transverse offset distance between two fibers. It is possible to control the orbital rotation frequency and perimeter by varying the transverse offset distance without external influences. Experimental results show that there is a threshold value, beyond which the particles will rotate in a certain trajectory. The threshold values of the transverse offset required to initiate orbital rotation was found to be different for different number particle arrays. The proposed optical manipulation technique has been verified to be useful for cell sorting, optical binding and assembly of microstructures. Optical manipulation, orbital rotation, multi-particles, dual-beam optical trap.
机译:我们为横向错位的双纤维光学阱中的微观尺寸多粒子阵列的光学轨道旋转提出了一种新的和多功能的方式。 PDMS(聚二甲基硅氧烷)芯片设计用于调节两个纤维之间的横向偏移距离。通过改变横向偏移距离而无需外部影响,可以控制轨道旋转频率和周边。实验结果表明,存在阈值,超出该阈值,颗粒将在某个轨迹中旋转。发现针对不同数量粒子阵列的轨道旋转所需的横向旋转所需的横向偏移的阈值。已经验证了所提出的光学操纵技术,可用于细胞分选,光学绑定和微结构组装。光学操纵,轨道旋转,多颗粒,双光束光学阱。

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