论文标题
铜纳米结构可以维持高质量的等离子吗?
Can Copper Nanostructures Sustain High-Quality Plasmons?
论文作者
论文摘要
与其他金属相比,银在等离激元材料中被认为是等离子材料中的国王。相比之下,对于等离子应用而言,铜通常被认为太损失了。在这里,我们在实验中证明了长铜纳米线(NWS)中的Vis-IR等离子体,其质量因子超过60,这是由空间分辨的高分辨率电子损失光谱(EELS)测量确定的。我们通过以下事实来解释这一违反直觉结果:这些金属线中的等离子在金属外部具有大部分电磁能,因此它们对材料中的非弹性损失不太敏感。我们提供了一组在长的银和铜NW上获得的大量数据,这些直径有不同的直径,这些数据支持了这一结论,并使我们能够理解等离子中辐射和非辐射损失在跨越各种能量的相对作用,这些损失范围跨越了各种能量,降至$ <20 \ $ <20 \,$ MEV,$ MEV。在如此小的等离子能量下,这些模式的热种群变得足够重要,可以使观察与等离子体吸收事件相关的电子能量增益。我们的结果支持将铜作为一个有吸引力的廉价材料平台,用于细长的纳米结构中的高质量等离子体。
Silver is considered to be the king among plasmonic materials because it features low inelastic absorption in the visible and infrared (vis-IR) spectral regions compared to other metals. In contrast, copper is commonly regarded as being too lossy for plasmonic applications. Here, we experimentally demonstrate vis-IR plasmons in long copper nanowires (NWs) with quality factors that exceed a value of 60, as determined by spatially resolved, high-resolution electron energy-loss spectroscopy (EELS) measurements. We explain this counterintuitive result by the fact that plasmons in these metal wires have most of their electromagnetic energy outside the metal, and thus, they are less sensitive to inelastic losses in the material. We present an extensive set of data acquired on long silver and copper NWs of varying diameters supporting this conclusion and further allowing us to understand the relative roles played by radiative and nonradiative losses in plasmons that span a wide range of energies down to $<20\,$meV. At such small plasmon energies, thermal population of these modes becomes significant enough to enable the observation of electron energy gains associated with plasmon absorption events. Our results support the use of copper as an attractive cheap and abundant material platform for high quality plasmons in elongated nanostructures.