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Effect of orientation on plasmonic coupling between gold nanorods

机译:取向对金纳米棒之间等离子体耦合的影响

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Radiative coupling of induced plasmonic fields in metal nanoparticles has drawn increasing attention in the recent literature due to a combination of improved experimental methods to study such phenomena and numerous potential applications, such as plasmonic nanoparticle rulers and plasmonic circuitry. Many groups, including ours, have used a near-exponential fit to express the size scaling of plasmonic coupling. First, we show experimental agreement between previously simulated nanorod coupling and plasmonic coupling in electron beam lithography (EBL) fabricated nanorods using the near-exponential expression. Next, we study the effect of nanoparticle orientation on plasmonic coupling using EBL and DDA simulations. We develop a mathematical relationship that is consistent with our findings and quantitatively describes plasmonic coupling between nanorods as a function of orientation, separation, induced dipole strength, and the dielectric constant of the medium. For applications utilizing plasmonic coupling to become viable with particle shapes that do not have spherical symmetry, such as nanoprisms and nanorods, comparison of the experimental and theoretical results of how particle orientation affects plasmonic coupling is essential.
机译:金属纳米粒子中感应等离子体场的辐射耦合,由于结合了研究这种现象的改进实验方法以及等离子体纳米粒子标尺和等离子体电路等众多潜在应用,在最近的文献中引起了越来越多的关注。许多小组,包括我们的小组,都使用接近指数的拟合来表达等离激元耦合的尺寸比例。首先,我们使用近似指数表达式在电子束光刻(EBL)制造的纳米棒中显示了先前模拟的纳米棒耦合与等离子体耦合之间的实验一致性。接下来,我们使用EBL和DDA模拟研究了纳米粒子取向对等离子体耦合的影响。我们建立了与我们的发现相符的数学关系,并定量地描述了纳米棒之间的等离子耦合作为方向,分离,感应偶极强度和介质介电常数的函数。对于利用等离子耦合在不具有球形对称性的颗粒形状(例如纳米棱镜和纳米棒)中变得可行的应用,比较粒子取向如何影响等离子耦合的实验和理论结果至关重要。

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