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Molding acoustic, electromagnetic and water waves with a single cloak

机译:用一个披风造型声波,电磁波和水波

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摘要

We describe two experiments demonstrating that a cylindrical cloak formerly introduced for linear surface liquid waves works equally well for sound and electromagnetic waves. This structured cloak behaves like an acoustic cloak with an effective anisotropic density and an electromagnetic cloak with an effective anisotropic permittivity, respectively. Measured forward scattering for pressure and magnetic fields are in good agreement and provide first evidence of broadband cloaking. Microwave experiments and 3D electromagnetic wave simulations further confirm reduced forward and backscattering when a rectangular metallic obstacle is surrounded by the structured cloak for cloaking frequencies between 2.6 and 7.0 GHz. This suggests, as supported by 2D finite element simulations, sound waves are cloaked between 3 and 8 KHz and linear surface liquid waves between 5 and 16 Hz. Moreover, microwave experiments show the field is reduced by 10 to 30 dB inside the invisibility region, which suggests the multi-wave cloak could be used as a protection against water, sonic or microwaves. © 2015, Nature Publishing Group. All rights reserved.
机译:我们描述了两个实验,这些实验证明了以前为线性表面液波引入的圆柱形斗篷对声波和电磁波同样有效。这种结构化的斗篷的行为分别类似于具有有效各向异性密度的声学斗篷和具有有效各向异性介电常数的电磁斗篷。测得的压力和磁场前向散射非常吻合,并为宽带隐身提供了初步证据。微波实验和3D电磁波模拟进一步证实,当矩形金属障碍物被结构化的斗篷包围时,向前和向后散射减小,从而掩盖了2.6至7.0 GHz之间的频率。这表明,在2D有限元模拟的支持下,声波被掩盖在3到8 KHz之间,而线性表面液波被掩藏在5到16 Hz之间。此外,微波实验表明,在不可见区域内,电场减小了10到30 dB,这表明多波披风可以用作抵御水,声波或微波的防护。 ©2015,自然出版集团。版权所有。

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