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Experimental demonstration of an intensity minimum at the focus of a laser beam created by spatial coherence: Application to the optical trapping of dielectric particles

机译:通过空间相干产生的激光束焦点处的最小强度的实验演示:在介电粒子的光阱中的应用

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摘要

In trying to manipulate the intensity distribution of a focused field, one typically uses amplitude or phase masks. Here we explore an approach, namely, varying the state of spatial coherence of the incident field. We experimentally demonstrate that the focusing of a Bessel-correlated beam produces an intensity minimum at the geometric focus rather than a maximum. By varying the spatial coherence width of the field, which can be achieved by merely changing the size of an iris, it is possible to change this minimum into a maximum in a continuous manner. This method can be used, for example, in novel optical trapping schemes, to selectively manipulate particles with either a low or high index of refraction.
机译:在尝试操纵聚焦场的强度分布时,通常使用幅度或相位掩模。在这里,我们探索一种方法,即改变入射场的空间相干状态。我们通过实验证明,贝塞尔相关光束的聚焦在几何焦点处产生最小强度,而不是最大强度。通过改变场的空间相干宽度,这可以仅通过改变虹膜的大小来实现,可以以连续的方式将该最小值变为最大值。例如,该方法可用于新颖的光学捕获方案中,以选择性地操纵具有低或高折射率的粒子。

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