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Slow bloch mode cavity for optical trapping

机译:慢泡模式腔,用于光阱

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In this paper, we will present a new kind of structure that has the ability to trap nanometric particles and presents big capture cross section. This approach relies on the use of slow Bloch mode in a photonic crystal cavity. We will show how a new kind of design allows for an easy coupling of this kind of structure. FDTD modeling of the optical forces will be presented. We will show that the light intensity modulation related to the periodicity of the photonic crystal gives rise to strong gradient forces that are able to trap small nanoparticles in a large cavity. Experimental results validating this approach will be presented.
机译:在本文中,我们将介绍一种新型的结构,该结构具有捕获纳米粒子的能力并具有较大的捕获截面。这种方法依赖于在光子晶体腔中使用慢Bloch模式。我们将展示一种新颖的设计如何使这种结构易于耦合。将介绍光力的FDTD建模。我们将显示与光子晶体的周期性有关的光强度调制会产生强大的梯度力,该梯度力能够将小的纳米颗粒捕获在大的空腔中。将提供验证该方法的实验结果。

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