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首页> 外文期刊>Journal of physical chemistry letters >Signatures of Small Morphological Anisotropies in the Plasmonic and Vibrational Responses of Individual Nano-objects
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Signatures of Small Morphological Anisotropies in the Plasmonic and Vibrational Responses of Individual Nano-objects

机译:单个纳米物体等离子体和振动反应中小态各向异性的签名

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The plasmonic and vibrational properties of single gold nanodisks patterned on a sapphire substrate are investigated via spatial modulation and pump-probe optical spectroscopies. The features of the measured extinction spectra and time-resolved signals are highly sensitive to minute deviations of the nanodisk morphology from a perfectly cylindrical one. An elliptical nanodisk section, as compared to a circular one, lifts the degeneracy of the two nanodisk in-plane dipolar surface plasmon resonances, which can be selectively excited by controlling the polarization of the incident light. This splitting effect, whose amplitude increases with nanodisk ellipticity, correlates with the detection of additional vibrational modes in the context of time-resolved spectroscopy. Analysis of the measurements is performed through the combination of optical and acoustic numerical models. This allows us first to estimate the dimensions of the investigated nanodisks from their plasmonic response and then to compare the measured and computed frequencies of their detectable vibrational modes, which are found to be in excellent agreement. This study demonstrates that single-particle optical spectroscopies are able to provide access to fine morphological characteristics, representing in this case a valuable alternative to traditional techniques aimed at postfabrication inspection of subwavelength nanodevice morphology.
机译:通过空间调制和泵探针光谱研究在蓝宝石衬底上图案化的单金纳多的等离子体和振动性能。测量的消光光谱和时间分辨信号的特征对来自一个完美的圆柱形的纳米磁盘形态的微小偏差非常敏感。与圆形磁盘相比,椭圆纳米型磁盘截面升力了两个纳米型磁盘面内偶极表面等离子体共振的退化,这可以通过控制入射光的偏振来选择性地激发。这种分裂效应,其幅度随纳米型磁盘椭圆性增加,与在时间分辨光谱的上下文中检测额外振动模式的检测。通过光学和声学数值模型的组合进行测量的分析。这允许我们首先估计所研究的纳米管道的尺寸,然后比较其可检测的振动模式的测量和计算的频率,这些振动模式被发现是非常一致的。该研究表明,单粒子光谱能够提供对细形态特征的进入,在这种情况下代表了一种有价值的传统技术替代,其旨在对亚波长纳米型形态进行后攻击检查。

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    Univ Claude Bernard Lyon 1 Inst Lumiere Mat Univ Lyon FemtoNanoOpt Grp CNRS F-69622 Villeurbanne France;

    Univ Claude Bernard Lyon 1 Inst Lumiere Mat Univ Lyon FemtoNanoOpt Grp CNRS F-69622 Villeurbanne France;

    Univ Claude Bernard Lyon 1 Inst Lumiere Mat Univ Lyon FemtoNanoOpt Grp CNRS F-69622 Villeurbanne France;

    Univ Claude Bernard Lyon 1 Inst Lumiere Mat Univ Lyon FemtoNanoOpt Grp CNRS F-69622 Villeurbanne France;

    Scuola Normale Super Pisa NEST Piazza S Silvestro 12 I-56124 Pisa Italy;

    Univ Claude Bernard Lyon 1 Inst Lumiere Mat Univ Lyon FemtoNanoOpt Grp CNRS F-69622 Villeurbanne France;

    Univ Claude Bernard Lyon 1 Inst Lumiere Mat Univ Lyon FemtoNanoOpt Grp CNRS F-69622 Villeurbanne France;

    Univ Claude Bernard Lyon 1 Inst Lumiere Mat Univ Lyon FemtoNanoOpt Grp CNRS F-69622 Villeurbanne France;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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