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首页> 外文期刊>Physical review >Sagittal Acoustic Waves In Finite Solid-fluid Superlattices: Band-gap Structure, Surface And Confined Modes, And Omnidirectional Reflection And Selective Transmission
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Sagittal Acoustic Waves In Finite Solid-fluid Superlattices: Band-gap Structure, Surface And Confined Modes, And Omnidirectional Reflection And Selective Transmission

机译:有限固流体超晶格中的矢状声波:带隙结构,表面和受限模式以及全向反射和选择性透射

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Using a Green's function method, we present a comprehensive theoretical analysis of the propagation of sagittal acoustic waves in superlattices (SLs) made of alternating elastic solid and ideal fluid layers. This structure may exhibit very narrow pass bands separated by large stop bands. In comparison with solid-solid SLs, we show that the band gaps originate both from the periodicity of the system (Bragg-type gaps) and the transmission zeros induced by the presence of the solid layers immersed in the fluid. The width of the band gaps strongly depends on the thickness and the contrast between the elastic parameters of the two constituting layers. In addition to the usual crossing of subsequent bands, solid-fluid SLs may present a closing of the bands, giving rise to large gaps separated by flat bands for which the group velocity vanishes. Also, we give an analytical expression that relates the density of states and the transmission and reflection group delay times in finite-size systems embedded between two fluids. In particular, we show that the transmission zeros may give rise to a phase drop of π in the transmission phase, and therefore, a negative delta peak in the delay time when the absorption is taken into account in the system. A rule on the confined and surface modes in a finite SL made of N cells with free surfaces is demonstrated, namely, there are always N-1 modes in the allowed bands, whereas there is one and only one mode corresponding to each band gap. Finally, we present a theoretical analysis of the occurrence of omnidirectional reflection in a layered media made of alternating solid and fluid layers. We discuss the conditions for such a structure to exhibit total reflection of acoustic incident waves in a given frequency range for all incident angles. Also, we show how this structure can be used as an acoustic filter that may transmit selectively certain frequencies within the omnidirectional gaps. In particular, we show the possibility of filtering assisted either by cavity modes (in particular sharp Fano resonances) or by interface resonances.
机译:使用格林函数方法,我们对矢状声波在由交替的弹性固体和理想流体层组成的超晶格(SL)中的传播进行了全面的理论分析。这种结构可能会显示出很窄的通带,并被大的阻带隔开。与固体-固体SL相比,我们显示出带隙既来自系统的周期性(Bragg型间隙),也来自于浸没在流体中的固体层的存在引起的透射零。带隙的宽度强烈取决于两个构成层的厚度和弹性参数之间的对比度。除了后续带的通常交叉之外,固体流体SL可能会出现带的闭合,从而导致较大的间隙,这些间隙由平坦的带分隔开,因此,组速度将消失。另外,我们给出了一个解析表达式,该表达式将状态密度与嵌入在两种流体之间的有限尺寸系统中的透射和反射群延迟时间联系起来。尤其是,我们表明,传输零在传输阶段可能会引起π的相位下降,因此,在系统中考虑吸收时,延迟时间中的负增量峰值会很大。证明了在由具有自由表面的N个单元构成的有限SL中的局限模和表面模的规则,即,在允许的带中始终存在N-1个模,而与每个带隙相对应的只有一个模。最后,我们对由交替的固体和流体层组成的分层介质中的全向反射的发生进行了理论分析。我们讨论了这种结构在所有入射角下在给定频率范围内展现声入射波全反射的条件。此外,我们展示了如何将此结构用作可以选择性地在全向间隙内传输某些频率的声学滤波器。特别是,我们显示了通过腔模(特别是尖锐的Fano共振)或界面共振辅助滤波的可能性。

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