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首页> 外文期刊>Science Advances >Sound vortex diffraction via topological charge in phase gradient metagratings
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Sound vortex diffraction via topological charge in phase gradient metagratings

机译:通过相位梯度分细胞拓扑电荷的声音涡旋衍射

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摘要

Wave fields with orbital angular momentum (OAM) have been widely investigated in metasurfaces. By engineering acoustic metasurfaces with phase gradient elements, phase twisting is commonly used to obtain acoustic OAM. However, it has limited ability to manipulate sound vortices, and a more powerful mechanism for sound vortex manipulation is strongly desired. Here, we propose the diffraction mechanism to manipulate sound vortices in a cylindrical waveguide with phase gradient metagratings (PGMs). A sound vortex diffraction law is theoretically revealed based on the generalized conservation principle of topological charge. This diffraction law can explain and predict the complicated diffraction phenomena of sound vortices, as confirmed by numerical simulations. To exemplify our findings, we designed and experimentally verified a PGM based on Helmholtz resonators that support asymmetric transmission of sound vortices. Our work provides previously unidentified opportunities for manipulating sound vortices, which can advance more versatile design for OAM-based devices.
机译:具有轨道角动量(OAM)的波场已被广泛研究了Metasurfaces。通过具有相位梯度元件的工程声学元件,常用相位扭曲以获得声学OAM。然而,它具有有限的操纵声音涡流的能力,并且强烈需要一种更强大的声音涡流操纵机制。在这里,我们提出了用相梯度分子(PGM)在圆柱形波导中操纵声音涡流的衍射机制。理论上基于拓扑电荷的广义保护原理理论地揭示了声音涡旋衍射定律。这种衍射法可以解释和预测声涡旋的复杂衍射现象,如数度模拟所确认。为了举例说明我们的调查结果,我们设计并通过了基于Helmholtz谐振器的PGM设计和实验验证了支持声音涡流的不对称传输的PGM。我们的工作为操纵声音提供了以前的身份不明机会,可以推进基于OAM的设备的更多功能设计。

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