English

Enhanced Approximate Cloaking by SH and FSH Lining

Analysis of PDEs 2015-05-30 v3 Mathematical Physics math.MP Classical Physics

Abstract

We consider approximate cloaking from a regularization viewpoint introduced in [13] for EIT and further investigated in [12] [17] for the Helmholtz equation. The cloaking schemes in [12] and [17] are shown to be (optimally) within lnρ1|\ln\rho|^{-1} in 2D and ρ\rho in 3D of perfect cloaking, where ρ\rho denotes the regularization parameter. In this paper, we show that by employing a sound-hard layer right outside the cloaked region, one could (optimally) achieve ρN\rho^N in RN, N2\mathbb{R}^N,\ N\geq 2, which significantly enhances the near-cloak. We then develop a cloaking scheme by making use of a lossy layer with well-chosen parameters. The lossy-layer cloaking scheme is shown to possess the same cloaking performance as the one with a sound-hard layer. Moreover, it is shown that the lossy layer could be taken as a finite realization of the sound-hard layer. Numerical experiments are also presented to assess the cloaking performances of all the cloaking schemes for comparisons.

Keywords

Cite

@article{arxiv.1108.6255,
  title  = {Enhanced Approximate Cloaking by SH and FSH Lining},
  author = {Jingzhi Li and Hongyu Liu and Hongpeng Sun},
  journal= {arXiv preprint arXiv:1108.6255},
  year   = {2015}
}
R2 v1 2026-06-21T18:57:50.965Z