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Giant optical forces in planar dielectric photonic metamaterials

机译:平面介电光子超材料中的巨大光学力

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We demonstrate that resonant optical forces generated within all-dielectric planar photonic metamaterials at near-infrared illumination wavelengths can be an order of magnitude larger than in corresponding plasmonic metamaterials, reaching levels many tens of times greater than the force resulting from radiation pressure. This is made possible by the dielectric structures' freedom from Joule losses and the consequent ability to sustain Fano-resonances with high quality factors that are unachievable in plasmonic nanostructures. Dielectric nano-optomechanical metamaterials can thus provide a functional platform for a range of novel dynamically controlled and self-adaptive nonlinear, tunable/switchable photonic metamaterials.
机译:我们证明,在全介质平面光子超材料中在近红外照明波长下产生的共振光学力可能比相应的等离子超材料大一个数量级,其水平比辐射压力所产生的力大数十倍。介电结构不受焦耳损耗的影响,以及随之而来的维持等离子体共振纳米结构中无法达到的高质量因子的Fano共振的能力,这使之成为可能。介电纳米光机械超材料可以为一系列新型的动态控制和自适应非线性,可调/可切换光子超材料提供功能平台。

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