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Optimal wave fields for micromanipulation in complex scattering environments

机译:复杂散射环境中微操矩的最佳波场

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The manipulation of small objects with light has become an indispensable tool in many areas of research, ranging from physics to biology and medicine(1-7). Here, we demonstrate how to implement micromanipulation at the optimal level of efficiency for arbitrarily shaped targets and inside complex environments such as disordered media. Our approach is to design wavefronts in the far field(8-15) with optimal properties in the near field of the target to apply the strongest possible force, pressure or torque as well as to achieve the most efficient focus inside the target. This non-iterative technique only relies on a simple eigenvalue problem established from the system's scattering matrix and its dependence on small shifts in specific target parameters (access to the near field of the target is not required). To illustrate this concept, we perform a proof-of-principle experiment in the microwave regime, fully confirming our predictions.
机译:使用光的小物体的操纵已成为许多研究领域的不可或缺的工具,从物理到生物学和药物(1-7)。 在这里,我们展示了如何在任意形状的目标的最佳效率水平和诸如无序介质之类的复杂环境中实现微观操纵。 我们的方法是在远场(8-15)中设计波前,在目标的近场中具有最佳性质,以应用最强大的力,压力或扭矩,以及实现目标内部最有效的聚焦。 这种非迭代技术仅依赖于从系统的散射矩阵建立的简单特征值问题及其对特定目标参数中的小移位的依赖性(不需要访问目标的近场)。 为了说明这一概念,我们在微波制度中执行原则上的原则实验,完全确认我们的预测。

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