首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers & Short Notes >Surface Plasmon Effects on the Far-Field Signals of AgO_x-Type Super Resolution Near-Field Structure
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Surface Plasmon Effects on the Far-Field Signals of AgO_x-Type Super Resolution Near-Field Structure

机译:表面等离子体对AgO_x型超分辨率近场结构远场信号的影响

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摘要

A super-resolution near-field structure (Super-RENS) of AgO_x type could perform the task of high-density near-field optical recording in a more feasible way. To further explore the optical resolution and controllability of super-RENS disks, the near-field and far-field optical properties of the AgO_x-type super-RENS embedded with random silver nanoparticles and nano cavities of different densities were studied using finite-difference time-domain simulations. The random nanostructures yielded super-resolution capability, but the surface plasmon effects generated by the random metallic nanoparticles significantly enhanced the far-field signals. A simplified Fourier optical theory was proposed to understand the relationship between the enhanced near field of random nanostructures and the super-resolution capability in the far field.
机译:AgO_x类型的超分辨率近场结构(Super-RENS)可以更可行的方式执行高密度近场光学记录的任务。为了进一步探讨super-RENS盘的光学分辨率和可控性,利用有限差分时间研究了随机嵌入银纳米粒子和不同密度的纳米腔的AgO_x型super-RENS的近场和远场光学性能。域模拟。随机纳米结构产生超分辨能力,但是由随机金属纳米颗粒产生的表面等离子体激元效应显着增强了远场信号。提出了一种简化的傅立叶光学理论来理解随机纳米结构的增强近场与远场超分辨能力之间的关系。

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