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Determination of optical forces in the proximity of ananoantenna

机译:野生植物邻近光力的测定

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We have used the Maxwell stress tensor method to calculate the optical forces acting upon a dielectric nanosphere in the proximity of gold nanoantenna structure optically excited by a plane wave. We have explored the dependence of optical forces for the full range of excitation angles with the conclusion that the maximum force occurs for the excitation at critical angle. The large force at this angle is, however, at the expense of greatly increased intensity in the volume of the particle from which we conclude that the important measure for the trapping efficiency in the case of plasmonic nanostructures is not the incident intensity of the plane wave, but rather the local intensity averaged over the volume of the particle. Our calculations further show multiple trapping sites with similar trapping properties, which leads to uncertainty in the trapping position. Furthermore, our calculations show that the heating effects might play a significant role in the experimentally observed trapping.
机译:我们已经使用了MaxWell Regress TensoR方法来计算在光学激发的近距离平面波的近距离的介电纳米上作用的光学力。我们已经探索了光学力对全系列激发角度的依赖性,结论是在临界角度发生激发的最大力。然而,这种角度的大力是在粒子的体积中产生大大增加的强度,我们得出的结论是,在等离子体纳米结构的情况下捕获效率的重要措施不是平面波的入射强度,而是局部强度在粒子的体积上平均值。我们的计算进一步示出了具有类似捕获性质的多个捕获部位,这导致捕获位置的不确定性。此外,我们的计算表明,加热效应可能在实验观察到的诱捕中发挥重要作用。

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