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通过顺序步长线性坐标变换实现的非封闭声学隐身装置。

Non-closed acoustic cloaking devices enabled by sequential-step linear coordinate transformations.

作者信息

Basiri Zahra, Fakheri Mohammad Hosein, Abdolali Ali, Shen Chen

机构信息

Applied Electromagnetic Laboratory, School of Electrical Engineering, Iran University of Science and Technology, 1684613114, Tehran, Iran.

Department of Mechanical Engineering, Rowan University, Glassboro, NJ, 08028, USA.

出版信息

Sci Rep. 2021 Jan 19;11(1):1845. doi: 10.1038/s41598-021-81331-3.

Abstract

Hitherto acoustic cloaking devices, which conceal objects externally, depend on objects' characteristics. Despite previous works, we design cloaking devices placed adjacent to an arbitrary object and make it invisible without the need to make it enclosed. Applying sequential linear coordinate transformations leads to a non-closed acoustic cloak with homogeneous materials, creating an open invisible region. Firstly, we propose to design a non-closed carpet cloak to conceal objects on a reflecting plane. Numerical simulations verify the cloaking effect, which is completely independent of the geometry and material properties of the hidden object. Moreover, we extend this idea to achieve a directional acoustic cloak with homogeneous materials that can render arbitrary objects in free space invisible to incident radiation. To demonstrate the feasibility of the realization, a non-resonant meta-atom is utilized which dramatically facilitated the physical realization of our design. Due to the simple acoustic constitutive parameters of the presented structures, this work paves the way toward realization of non-closed acoustic devices, which could find applications in airborne sound manipulation and underwater demands.

摘要

迄今为止,用于从外部隐藏物体的声学隐身装置依赖于物体的特性。尽管有先前的研究工作,但我们设计了放置在任意物体旁边的隐身装置,无需将物体封闭就能使其不可见。应用顺序线性坐标变换可得到一种由均匀材料制成的非封闭声学隐身衣,从而创建一个开放的不可见区域。首先,我们提议设计一种非封闭的地毯式隐身衣,以在反射平面上隐藏物体。数值模拟验证了隐身效果,该效果完全独立于隐藏物体的几何形状和材料特性。此外,我们扩展了这一想法,以实现一种由均匀材料制成的定向声学隐身衣,它能使自由空间中的任意物体对入射辐射不可见。为了证明实现的可行性,我们利用了一种非谐振元原子,这极大地促进了我们设计的物理实现。由于所提出结构的声学本构参数简单,这项工作为实现非封闭声学装置铺平了道路,这类装置可应用于空气声操纵和水下需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/073f/7815784/3f97a95a26f5/41598_2021_81331_Fig1_HTML.jpg

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