电介质微柱为原子和离子制造了一个纳米圆柱形陷阱

V. Klimov, R. Heydarian, C. Simovski
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引用次数: 2

摘要

在电介质微圆柱对可见光的衍射中,总是会出现包状的倏逝波。然而,单波入射对应于圆柱体外消去波的相当小的冲击。在本文中,我们从理论上证明了一个对称的平面波对撞击玻璃微圆柱体对应于更大的倏逝波的冲击。即,倏逝波与传播波的干涉导致电磁场在很小的截面区域内受到抑制。该区域位于距离微圆筒背面和沿其轴线相当远的自由空间中。它可以作为冷原子和冷离子的线性光阱。
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Dielectric microcylinder makes a nanocylindrical trap for atoms and ions
In the diffraction of visible light by a dielectric microcylinder packages of evanescent waves always arise. However, a single-wave incidence corresponds to rather small impact of evanescent waves outside the cylinder. In this paper, we theoretically show that a symmetric pair of plane waves impinging a glass microcylinder corresponds to much higher impact of the evanescent waves. Namely, the interference of the evanescent waves with the propagating ones results in the suppression of the electromagnetic field in an area with very small cross section. This area is located in free space at a substantial distance from the {rear side of the microcylinder and along its axis}. It may serve a linear optical trap for cold atoms and ions.
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