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Band-Gap Tuning in Two-Dimensional Spatiotemporal Phononic Crystals

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PHYSICAL REVIEW APPLIED
卷 15, 期 1, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevApplied.15.014022

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The study found that in subwavelength-dimensioned phononic crystals with large band gaps, the concept of band gap is destroyed when the radius of cylinders periodically placed inside a matrix of highly contrasting elastic properties varies with time. However, with the appropriate tuning of parameters, some band-gap region can be retained, making such systems possible candidates for tunable bandpass filters or phononic isolators, suitable for sensor applications.
We investigate the effect of small spatiotemporal modulations in subwavelength-dimensioned phononic crystals with large band gaps, on the frequency spectrum for elastic waves polarized in the plane of periodicity. When the radius of cylinders periodically placed inside a matrix of highly contrasting elastic properties is time varying, we find that due to the appearance of frequency harmonics throughout the spectrum, the notion of a band gap is destroyed in general, although with the appropriate tuning of parameters, in particular the modulation frequency, it is possible that some band-gap region is retained, making such systems possible candidates for tunable bandpass filters or phononic isolators, accordingly, and for sensor applications.

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