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Toroidal Lasing Spaser

机译:环形激光打火机

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Toroidal shapes are often found in bio-molecules, viruses, proteins and fats, but only recently it was proved experimentally that toroidal structures can support exotic high-frequency electromagnetic excitations that are neither electric or magnetic multipoles. Such excitations, known as toroidal moments, could be playing an important role in enhancing inter-molecular interaction and energy transfer due to its higher electromagnetic energy confinement and weaker coupling to free space. Using a model toroidal metamaterial system, we show that coupling optical gain medium with high Q -factor toroidal resonance mode can enhance the single pass amplification to up to 65 dB. This offers an opportunity of creating the “toroidal” lasing spaser, a source of coherent optical radiation that is fueled by toroidal plasmonic oscillations in the nanostructure.
机译:环形形状经常出现在生物分子,病毒,蛋白质和脂肪中,但直到最近才通过实验证明环形结构可以支持奇异的高频电磁激励,而该激励既不是电的也不是磁的多极。由于其较高的电磁能量限制和较弱的与自由空间的耦合,这种被称为环形矩的激励在增强分子间相互作用和能量传递中可能起重要作用。使用模型环形超材料系统,我们表明,将具有高Q因子环形共振模式的光增益介质耦合可以将单程放大提高到65 dB。这提供了创建“环形”激光打标机的机会,这是一种相干光辐射源,其由纳米结构中的环形等离子激元激发。

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