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Electrodynamic multiple-scattering method for the simulation of optical trapping atop periodic metamaterials

机译:用于模拟光学俘获的仿真周期超材料的电动多散射方法

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We present a new theoretical tool for simulating optical trapping of nanoparticles in the presence of an arbitrary metamaterial design. The method is based on rigorously solving Maxwell's equations for the metamaterial via a hybrid discrete-dipole approximation/multiple-scattering technique and direct calculation of the optical force exerted on the nanoparticle by means of the Maxwell stress tensor. We apply the method to the case of a spherical polystyrene probe trapped within the optical landscape created by illuminating of a plasmonic metamaterial consisting of periodically arranged tapered metallic nanopyramids. The developed technique is ideally suited for general optomechanical calculations involving metamaterial designs and can compete with purely numerical methods such as finite-difference or finite-element schemes.
机译:我们在任意超材料设计存在下,提出了一种模拟纳米颗粒的光学捕获的新理论工具。 该方法基于通过混合离散 - 偶极近似/多散射技术对超级材料的严格求解Maxwell的等式,并通过MaxWell应力张量施加在纳米颗粒上施加在纳米颗粒上的光力的直接计算。 我们将该方法应用于通过照明由周期性地布置的锥形金属纳米氟胺的等离子体超级材料而产生的光学景观中的球形聚苯乙烯探针的情况。 开发技术非常适用于涉及超材料设计的通用光学力学计算,可以与纯粹的数值方法竞争,例如有限差分或有限元方案。

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