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Non-singular acoustic cloak derived by the ray tracing method with rotationally symmetric transformations

机译:具有旋转对称变换的射线跟踪方法得出的非奇异的声学披风

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摘要

Recently, the ray tracing method has been used to derive the non-singular cylindrical invisibility cloaks for out-of-plane shear waves, which is impossible via the transformation method directly owing to the singular push-forward mapping. In this paper, the method is adopted to design a kind of non-singular acoustic cloak. Based on Hamilton's equations of motion, eikonal equation and pre-designed ray equations, we derive several constraint equations for bulk modulus and density tensor. On the premise that the perfect matching conditions are satisfied, a series of non-singular physical profiles can be obtained by arranging the singular terms reasonably. The physical profiles derived by the ray tracing method will degenerate to the transformation-based solutions when taking the transport equation into consideration. This illuminates the essence of the newly designed cloaks that they are actually the so-called eikonal cloaks that can accurately control the paths of energy flux but with small disturbance in energy distribution along the paths. The near-perfect invisible performance has been demonstrated by the numerical ray tracing results and the pressure distribution snapshots. Finally, a kind of reduced cloak is conceived, and the good invisible performance has been measured quantitatively by the normalized scattering width.
机译:近年来,射线追踪方法已被用于导出平面外剪切波的非奇异圆柱隐形斗篷,这直接由于奇异的前推映射而无法通过转换方法实现。本文采用该方法设计了一种非奇异的声学披风。基于汉密尔顿运动方程,电子方程和预先设计的射线方程,我们导出了体积模量和密度张量的几个约束方程。在满足理想匹配条件的前提下,通过合理安排奇异项可以得到一系列非奇异的物理轮廓。当考虑传输方程时,通过射线跟踪方法得出的物理轮廓将退化为基于变换的解。这说明了新设计的隐身斗篷的本质,它们实际上是所谓的Eikonal隐身斗篷,它们可以精确地控制能量通量的路径,但沿路径的能量分布干扰很小。数值射线追踪结果和压力分布快照已证明了近乎完美的隐形性能。最后,设想了一种减少的披风,并通过归一化散射宽度定量测量了良好的隐形性能。

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