Multiple optical tweezers generated from phase Fresnel lens array

Ji Yunfeng, Xu Jie, Hu Kaikai, Lu Xuanhui
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Abstract

We report a new method to generate multiple optical traps by using phase Fresnel lens (PFL) array. We also demonstrate its applications on manipulating micro particles in experiment. In our experiment, the PFL array is formed by a spatial light modulation. The multiple beams generated by PFL array are directed into the inverted microscope and are highly focused in the focus plane of the objective. The 1.4μm polystyrene spheres are trapped in the experiment. Each of the trapped particles can be controlled by changing the position of the corresponding Fresnel zone plate in the array. Comparing with the hologram methods, which is the most popular method in generating optical trap arrays, the PFL array method has increased the trapping efficiency. Because the power of the useless zero-order light in the hologram method can be used in PFL array method. Besides, each of the trapped particles can be controlled separately in PFL array method, which makes micromanipulation more conveniently.
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相位菲涅耳透镜阵列产生的多光镊
本文报道了一种利用相位菲涅耳透镜阵列产生多重光阱的新方法。并在实验中演示了其在微粒子操纵上的应用。在我们的实验中,PFL阵列由空间光调制形成。PFL阵列产生的多束光束被引导到倒置显微镜内,并在物镜聚焦平面内高度聚焦。实验中捕获了1.4μm聚苯乙烯球。每个被捕获的粒子都可以通过改变阵列中相应菲涅耳带板的位置来控制。与目前最常用的光阱阵列生成方法全息法相比,PFL阵列法提高了捕获效率。由于全息法中无用的零阶光的功率可以用于PFL阵列法。此外,PFL阵列可以对捕获的每个粒子进行单独控制,使微操作更加方便。
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