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Broadband evolution of phononic-crystal-waveguide eigenstates in real- and k-spaces

机译:实空间和k空间中声子晶体波导本征态的宽带演化

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摘要

Control of sound in phononic band-gap structures promises novel control and guiding mechanisms. Designs in photonic systems were quickly matched in phononics, and rows of defects in phononic crystals were shown to guide sound waves effectively. The vast majority of work in such phononic guiding has been in the frequency domain, because of the importance of the phononic dispersion relation in governing acoustic confinement in waveguides. However, frequency-domain studies miss vital information concerning the phase of the acoustic field and eigenstate coupling. Using a wide range of wavevectors k, we implement an ultrafast technique to probe the wave field evolution in straight and L-shaped phononic crystal surface-phonon waveguides in real- and k-space in two spatial dimensions, thus revealing the eigenstate-energy redistribution processes and the coupling between different frequency-degenerate eigenstates. Such use of k-t space is a first in acoustics, and should have other interesting applications such as acoustic-metamaterial characterization.
机译:控制声子带隙结构中的声音有望带来新颖的控制和引导机制。光子系统中的设计在声子学中迅速匹配,并且显示了声子晶体中的缺陷行可以有效地引导声波。由于声子色散关系在控制波导中的声限制方面很重要,因此在这种声子导引中的绝大多数工作都在频域中。但是,频域研究缺少有关声场相位和本征态耦合的重要信息。使用广泛的波矢k,我们实现了一种超快技术,可以在二维空间的实空间和k空间中探测直形和L形声子晶体表面声子波导中的波场演化,从而揭示本征态能量的重新分布过程和不同频率简并本征态之间的耦合。 k-t空间的这种使用在声学方面尚属首创,并且应具有其他有趣的应用,例如声学超材料表征。

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