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Optical and magneto-optical properties of gold core cobalt shell magnetoplasmonic nanowire arrays

机译:金芯钴壳磁等离子体纳米线阵列的光学和磁光特性

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摘要

In this work we present core–shell nanowire arrays of gold coated with a nanometric layer of cobalt. Despite the extremely small Co volume, these core–shell nanowires display large magneto-optical activity and plasmonic resonance determined by the geometry of the structure. Therefore, we are able to tune both the plasmonic and magneto-optical response in the visible range. Through optical and ellipsometric measurements in transmission, and applying a magnetic field to the sample, it is possible to modulate the value of the phase angle (Del {Δ}) between the S and P polarised components. It was found that the core–shell sample produced an order of magnitude larger variation in Del with changing magnetic field direction, compared with hollow cobalt tubes. The enhancement of magneto optical properties through the plasmonic nature of the gold core is complemented with the ability to induce magnetic influence over optical properties via an externally applied field. Moreover, we demonstrate for the first time the ability to use the remanent magnetisation of the Co, in conjunction with the optical properties defined by the Au, to observe remanent optical states in this uniquely designed structure. This new class of magnetoplasmonic metamaterial has great potential in a wide range of applications, from bio-sensing to data storage due to the tuneable nature of multiple resonance modes and dual functionality.
机译:在这项工作中,我们提出了金-核-壳纳米线阵列,其中镀有纳米级的钴。尽管Co体积非常小,但这些核壳纳米线仍显示出较大的磁光活性和由结构的几何形状决定的等离子体共振。因此,我们能够在可见光范围内调整等离子体和磁光响应。通过透射中的光学和椭偏测量,并向样品施加磁场,可以调制S和P偏振分量之间的相角(Del {Δ})值。研究发现,与空心钴管相比,随着磁场方向的变化,核-壳样品的Del值变化幅度大一个数量级。通过金芯的等离子体性质增强了磁光学性质,并具有通过外部施加的磁场对光学性质产生磁影响的能力。此外,我们首次展示了利用Co的剩磁强度以及Au定义的光学性能,以这种独特设计的结构观察剩余光学状态的能力。由于多种共振模式和双重功能的可调谐特性,这种新型的磁等离子体超材料在生物传感到数据存储等广泛应用中具有巨大潜力。

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