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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Dipole Radiation-Induced Extraordinary Optical Transmission for Silver Nanorod-Covered Silver Nanohole Arrays
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Dipole Radiation-Induced Extraordinary Optical Transmission for Silver Nanorod-Covered Silver Nanohole Arrays

机译:偶极辐射诱导银纳米棒覆盖的银纳米孔阵列的非凡光学传输

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A new extraordinary optical transmission (EOT) mode is discovered when a hexagonal Ag nanohole array is covered by a tilted Ag nanorod array. The resonant wavelength of this EOT mode red-shifts with respect to the normal EOT mode predicted by plasmon-grating coupling theory or dynamic scattering theory and increases linearly with the nanorod length. The structures also show strong polarization dependence; i.e., when the electric field (E-field) direction of the incident light is perpendicular to the long axis of the nanorods, only normal EOT spectrum is visible, but when the E-field is parallel to nanorod axis, the new mode appears. Our finite-difference-time-domain calculations confirm this finding and show that this new mode is due to the dipole radiation of the nanorods on top of the nanoholes. It is expected that other complicated unit cells of nanohole arrays could generate other new EOT modes and can be used to design new optical devices.
机译:当六边形Ag纳米座阵列被倾斜的AG Nanorod阵列覆盖时,发现了一种新的非凡光学传输(EOT)模式。 该EOT模式的谐振波长相对于通过等离子体光栅耦合理论或动态散射理论预测的正常EOT模式的变化,并且随着纳米棒的长度线性地增加。 结构也显示出强烈的极化依赖性; 即,当入射光的电场(E场)方向垂直于纳米棒的长轴时,只能看到正常的EOT频谱,但是当E场平行于纳米OD轴时,将出现新模式。 我们的有限差分域计算证实了这一发现,并表明这种新模式是由于纳米孔顶部的纳米棒的偶极辐射。 预期纳米阵列的其他复杂单元电池可以产生其他新的EOT模式,并且可用于设计新的光学器件。

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