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均一取向等离子体二聚体的制备及光学机理 被引量:1
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作者 王昭一 穆世林 +1 位作者 张学民 张俊虎 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2021年第8期2374-2380,共7页
以单层SiO_(2)胶体微球为模板,利用Au/SiO_(2)/Au交替沉积结合后退火处理的方法,制备了一种垂直堆叠且均一取向的等离子体二聚体结构.该方法具有很大的自由度,可以通过调节实验流程来制备大面积取向相同的同质或异质纳米粒子二聚体.所... 以单层SiO_(2)胶体微球为模板,利用Au/SiO_(2)/Au交替沉积结合后退火处理的方法,制备了一种垂直堆叠且均一取向的等离子体二聚体结构.该方法具有很大的自由度,可以通过调节实验流程来制备大面积取向相同的同质或异质纳米粒子二聚体.所制备的纳米粒子的等离子体杂化效应明显,在消光光谱中可以观察到成键及反键共振峰.由于所得纳米粒子二聚体具有垂直堆叠的特殊规整取向,还可以观察到所得样品等离子体吸收峰的角度依赖特性.此外,还探讨了Au/SiO_(2)/Au同质二聚体和Au/SiO_(2)/Ag异质二聚体的光学特性差异,发现与Au/SiO_(2)/Au同质二聚体相比,Au/SiO_(2)/Ag异质二聚体由于Ag偶极等离子体模式与Au带间吸收的耦合而呈现Fano共振峰.所得结果提供了一个调节贵金属等离子体光学共振峰位、强度和波形的策略,在纳米光子学领域有着广阔的应用前景,对今后的实验和理论研究具有重要参考价值. 展开更多
关键词 等离子共振 金属纳米粒子二聚体 刻蚀
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Plasmonic mode mixing in nanoparticle dimers with nm-separations via substrate-mediated coupling 被引量:3
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作者 Jesse Theiss Mehmet Aykol Prathamesh Pavaskar Stephen B. Cronin 《Nano Research》 SCIE EI CAS CSCD 2014年第9期1344-1354,共11页
We fabricate arrays of metallic nanoparticle dimers with nanometer separation using electron beam lithography and angle evaporation. These "nanogap" dimers are fabricated on thin silicon nitride membranes to enable ... We fabricate arrays of metallic nanoparticle dimers with nanometer separation using electron beam lithography and angle evaporation. These "nanogap" dimers are fabricated on thin silicon nitride membranes to enable high resolution transmission electron microscope imaging of the specific nanoparticle geometries. Plasmonic resonances of the pairs are characterized by dark-field scattering micro-spectroscopy, which enables the optical scattering from individual nano- structures to be measured by using a spatially-filtered light source to illuminate a small area. Scattering spectra from individual dimers are correlated with transmis- sion electron microscope images and finite-difference time-domain simulations of their electromagnetic response, with excellent agreement between simulation and experiment. We observe a strong polarization dependence with two dominant scattering peaks in spectra taken with the polarization aligned along the dimer axis. This response arises from a unique Fano interference, in which the bright hybridized modes of an asymmetric dimer are able to couple to the dark higher- order hybridized modes through substrate-mediated coupling. The presence of this interference is strongly dependent on the nanoparticle geometry that defines the plasmon energy profile but also on the intense localization of charge at the dielectric surface in the nanogap region for separations smaller than 6 nm. 展开更多
关键词 PLASMONICS fano interference transmission electron microscopy (TEM) nanogapdark-field spectroscopy
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