Surface acoustic waves interaction with confined acoustic phonons in a coupled nanoridges dimer set atop of a multilayer design

Mohamed El Ghafiani, Adnane Noual, Yamina Rezzouk, Mohammed Moutaouekkil, El Houssaine El Boudouti
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Abstract

We present a comprehensive study using finite element numerical analysis of the acoustic localized phonons supported by a gold nanoridges dimer-based multilayer design. The latter consists in a SiO2-substrate over which a gold film covered with a thin polymer is deposited. We investigate first the mechanical eigen-modes analysis of a single monomer ridge, where we find flexural and compressional type modes in the sub-GHz frequency range. This is realized by either setting the ridge in a periodic structure, which enables to get the dispersion curve of the modes, or by considering an isolated system bounded by perfect matched layers, where we use the equivalent of the local density of states to track the modes. A good agreement is obtained between the two methods. Similarly, we find in case of the coupled dimer ridges hybridized modes, namely the flexural and compressional modes of a monomer split-up into in- and -out-of-phase type modes. We demonstrate efficient coupling between the monomer/dimer localized phonons with surface acoustic waves (SAWs) as the simulated transmission spectra show dips at the frequencies of the monomer/dimer eigenmodes. For symmetry reasons, some of the dimer modes are expected to be optomechanically active. The proposed SAW-based device is meant to help design acousto-optic modulators or ultrasensitive sensors.
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在多层设计顶部的耦合纳米脊二聚体中,表面声波与受限声子的相互作用
我们提出了一项全面的研究,利用有限元数值分析的声学局域声子支持的金纳米脊二聚体为基础的多层设计。后者由二氧化硅衬底组成,衬底上沉积着一层覆盖着薄聚合物的金膜。我们首先研究了单个单体脊的机械本征模态分析,其中我们发现在sub-GHz频率范围内的弯曲和压缩型模态。这可以通过在周期结构中设置脊来实现,这样可以得到模式的色散曲线,或者通过考虑一个由完美匹配层包围的孤立系统来实现,在这个孤立系统中,我们使用等效的局部态密度来跟踪模式。两种方法得到了很好的一致性。同样,我们发现在耦合二聚体脊的情况下,杂化模式,即单体的弯曲和压缩模式分裂为相内型和相外型模式。我们证明了单体/二聚体局部声子与表面声波(saw)之间的有效耦合,因为模拟的透射光谱在单体/二聚体本征模式的频率处显示出下降。由于对称性的原因,一些二聚体模式被认为是光机械活性的。提出的基于saw的装置旨在帮助设计声光调制器或超灵敏传感器。
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来源期刊
Arab Journal of Basic and Applied Sciences
Arab Journal of Basic and Applied Sciences Mathematics-Mathematics (all)
CiteScore
5.80
自引率
0.00%
发文量
31
审稿时长
36 weeks
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