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Application of optical tweezers using DOE and SLM to control of beads with information-DNA for photonic DNA computing

机译:光学镊子使用DOE和SLM对光子DNA计算信息DNA对珠子的应用

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We have proposed photonic DNA computing as a new parallel computing paradigm, in which optical techniques are used to manipulate information-coded DNA. In this paper, we present a parallel transportation of multiple beads bound with hairpin-structure DNA using a dynamic optical tweezers system which combines a spatial light modulator (SLM) with a diffractive optical element (DOE). This system provides an effective method for parallel manipulations of DNA-bound beads at multiple positions. In the experiments, three 2.8-μm-diameter beads bound with hairpin DNA were trapped and transported in 1 μm of step by switching of the SLM patterns. The results demonstrate that the dynamic holographic optical tweezers system with combination of the DOE and the SLM is useful in spatially parallel processing required for photonic DNA computing.
机译:我们已经提出了作为新的并联计算范例计算的光子DNA计算,其中光学技术用于操纵信息编码的DNA。在本文中,我们使用使用衍射光调制器(SLM)与衍射光学元件(DOE)相结合的动态光学镊子系统,呈现与发夹结构DNA结合的多个珠子的并联运输。该系统提供了一种有效的方法,用于在多个位置并行地操纵DNA绑定珠子。在实验中,通过切换SLM图案,捕获与发夹DNA的三个2.8μm直径的珠子在1μm的步骤中被捕获并运输。结果表明,具有DOE和SLM的组合的动态全息光学镊子系统可用于光子DNA计算所需的空间平行处理。

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