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Acoustic band gaps created by rotating square rods in a two-dimensional lattice - art. no. 046628

机译:通过旋转二维格子中的方棒产生的声带隙-艺术没有。 046628

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摘要

Acoustic band gaps can be opened and tuned by rotating square rods in two-dimensional liquid sonic crystals. For the systems of mercury rods with square cross section in a water host, the width of lowest gaps increases as the rotation angle of the square rods increases. But opposite results are found for the inverse systems of water rods in mercury, where the lowest gaps narrow with an increase in the rotation angle. This gap-tuning effect becomes more evident with the filling fraction increase. Such an effect should open up a new way for designing acoustic band gaps in two-dimensional phononic crystals. [References: 34]
机译:可以通过旋转二维液态声晶体中的方棒来打开和调整声带隙。对于水基质中具有方形横截面的水银棒系统,最小间隙的宽度随方形棒的旋转角度的增加而增加。但是,对于汞中的水棒逆系统,发现相反的结果,其中最小的间隙随着旋转角度的增加而变窄。随着填充率的增加,这种间隙调节效果变得更加明显。这种效果将为设计二维声子晶体中的声带隙开辟新的途径。 [参考:34]

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