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Modes of core-shell silver wire plasmonic nanolaser beyond Drude formula

机译:超越德鲁公式的核-壳银线等离子体纳米激光的模式

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We consider the two-dimensional problem of a nonattenuating H-polarized electromagnetic field that can exist in the presence of a circular cylindrical nanowire (core) made of silver and coated with a concentric layer of active material (shell). Assuming that the natural-mode frequency is real-valued, we search for it together with the associated threshold value of material gain in the coating. Using the separation of variables, we arrive at a set of independent characteristic equations for each azimuthal index and seek their roots numerically. Here, it is important to use an adequate description of the metal core dielectric function. We observe that the well-known Drude formula not only leads to predictable errors in the lasing wavelengths but additionally, fails to reveal the complete composition of the modal spectrum. Known examples of sophisticated Drude-like formulas help overcome these drawbacks; however, these formulas suffer from negative absorption in silver in part of the visible range. Therefore, the use of experimental data for the metal dielectric function is mandatory. Our analysis reveals that, in each azimuthal order, the considered nanowire laser can emit light on several localized surface plasmon modes and the shell modes.
机译:我们考虑了在存在由银制成并涂有同心活性材料层(壳)的圆柱形纳米线(芯)的情况下可能存在的非衰减H极化电磁场的二维问题。假设自然模式频率是实值,我们将其与涂层中材料增益的相关阈值一起搜索。使用变量的分离,我们为每个方位角索引建立了一组独立的特征方程,并从数字上寻找其根。在此,重要的是要充分描述金属芯的介电功能。我们观察到,众所周知的Drude公式不仅会导致激光波长中的可预测误差,而且无法揭示模态光谱的完整组成。复杂的类似德鲁德公式的已知示例有助于克服这些缺点。然而,这些分子式在可见光范围的一部分中遭受银的负吸收。因此,必须将实验数据用于金属介电功能。我们的分析表明,在每个方位角顺序中,所考虑的纳米线激光器都可以在几种局部表面等离子体激元模和壳模上发射光。

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