Elastodynamical resonances and cloaking of negative material structures beyond quasistatic approximation

Hongjie Li, Hongyu Liu*, Jun Zou

*Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

9 Citations (Scopus)

Abstract

Given the flexibility of choosing negative elastic parameters, we construct material structures that can induce two resonance phenomena, referred to as the elastodynamical resonances. They mimic the emerging plasmon/polariton resonance and anomalous localized resonance in optics for subwavelength particles. However, we study the peculiar resonance phenomena for linear elasticity beyond the subwavelength regime. It is shown that the resonance behaviors possess distinct characters, with some similar to the subwavelength resonances, but some sharply different due to the frequency effect. It is particularly noted that we construct a core–shell material structure that can induce anomalous localized resonance as well as cloaking phenomena beyond the quasistatic limit. The study is boiled down to analyzing the so-called elastic Neumann–Poincaré (N-P) operator in the frequency regime. We provide an in-depth analysis of the spectral properties of the N-P operator on a circular domain beyond the quasistatic approximation, and these results are of independent interest to the spectral theory of layer potential operators.
Original languageEnglish
Pages (from-to)716-754
JournalStudies in Applied Mathematics
Volume150
Issue number3
Online published2 Jan 2023
DOIs
Publication statusPublished - Apr 2023

Funding

The work of H. Li was supported by a Direct Grant for Research, CUHK (project 4053518). The work of H. Liu was supported by the Hong Kong RGC General Research Funds (projects 12302919, 12301420, and 11300821), the NSFC/RGC Joint Research Fund (project N_CityU 101/21), and the France-Hong Kong ANR/RGC Joint Research Grant, A-CityU203/19. The work of J. Zou was substantially supported by the Hong Kong RGC General Research Fund (projects 14306921 and 14306719).

Research Keywords

  • anomalous localized resonance
  • beyond quasistatic limit
  • core–shell structure
  • invisibility cloaking
  • negative materials
  • Neumann–Poincaré operator
  • spectral

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