论文标题

散射取消技术的声音旋转物体

Scattering Cancellation Technique for Acoustic Spinning Objects

论文作者

Farhat, Mohamed, Guenneau, Sebastien, Alu, Andrea, Wu, Ying

论文摘要

事实证明,散射取消技术(SCT)是使静态物体不可见的有效方法。但是,旋转的圆柱或球形物体具有其他特殊的散射特征,这些特征无法通过常规的基于SCT的斗篷取消。在这里,讨论了基于具有不同角速度的旋转壳的广义SCT理论,以掩盖旋转对象,并将其隐藏在静态观察者中。在圆柱体的情况下,在分析和数值上证明了这一概念,表明广义SCT在使旋转对象使外部观察者看起来很静态方面有效地运行。我们的建议扩展了SCT的领域,并将其更接近其实际认识的一步,涉及移动对象。

The scattering cancellation technique (SCT) has proved to be an effective way to render static objects invisible to electromagnetic and acoustic waves. However, rotating cylindrical or spherical objects possess additional peculiar scattering features that cannot be cancelled by regular SCT-based cloaks. Here, a generalized SCT theory to cloak spinning objects, and hide them from static observers, based on rotating shells with different angular velocity is discussed. This concept is analytically and numerically demonstrated in the case of cylinders, showing that generalized SCT operates efficiently in making rotating objects appear static to an external observer. Our proposal extends the realm of SCT, and brings it one step closer to its practical realization that involves moving objects.

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