Chien Miao-Hsuan, Nien Li-Wei, Chao Bo-Kai, Li Jia-Han, Hsueh Chun-Hway
Department of Materials Science and Engineering, National Taiwan University, Taipei 10617, Taiwan.
Nanoscale. 2016 Feb 14;8(6):3660-70. doi: 10.1039/c5nr07476b. Epub 2016 Jan 26.
We studied the effects of relative orientation of bowtie nanostructures on the plasmon resonance both experimentally and theoretically in this work. Specifically, we fabricated gold bowtie nanoantennas with rotated nanoprisms, measured the near-field and the far-field resonance behaviors using Raman spectroscopy and scattering microspectroscopy, and simulated the effects of the rotation angle on the localized surface plasmonic resonance using finite-difference time-domain simulations. In addition to the widely-discussed dipolar resonance in regular bowtie nanostructures, defined as tip-mode resonance in the present study, the excitations of edge-mode resonance were discovered under certain rotation angles of nanoprisms. Because of the resonances of different modes at different wavelengths, two different incident laser sources were used to measure the Raman spectra to provide evidence for the evolution of different resonance modes. Also, both the tip-mode and edge-mode resonances were verified by the simulated charge density distribution and their trends were discussed. Based on the discovered trend, a plasmon protractor was created with a near-exponential decay relationship between the relative resonance wavelength shift and cosine of the rotation angle. A plasmon hybridization model was also proposed for rotated bowties to explain the coupling between nanoprisms during rotation.
在本工作中,我们通过实验和理论研究了领结型纳米结构的相对取向对等离子体共振的影响。具体而言,我们制备了具有旋转纳米棱镜的金领结纳米天线,使用拉曼光谱和散射显微光谱测量了近场和远场共振行为,并使用时域有限差分模拟来模拟旋转角度对局域表面等离子体共振的影响。除了在规则领结纳米结构中广泛讨论的偶极共振(在本研究中定义为尖端模式共振)之外,在纳米棱镜的特定旋转角度下还发现了边缘模式共振的激发。由于不同模式在不同波长处的共振,我们使用两种不同的入射激光源来测量拉曼光谱,以提供不同共振模式演变的证据。此外,通过模拟电荷密度分布验证了尖端模式和边缘模式共振,并讨论了它们的趋势。基于发现的趋势,创建了一个等离子体量角器,其相对共振波长偏移与旋转角度的余弦之间具有近似指数衰减关系。还提出了一个用于旋转领结的等离子体杂交模型,以解释旋转过程中纳米棱镜之间的耦合。