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The Non-Hermitian Skin Effect With Three-Dimensional Long-Range Coupling

Analysis of PDEs 2023-11-20 v1 Materials Science Mathematical Physics math.MP

Abstract

We study the non-Hermitian skin effect in a three-dimensional system of finitely many subwavelength resonators with an imaginary gauge potential. We introduce a discrete approximation of the eigenmodes and eigenfrequencies of the system in terms of the eigenvectors and eigenvalues of the so-called gauge capacitance matrix CNγ\mathcal{C}_N^\gamma, which is a dense matrix due to long-range interactions in the system. Based on translational invariance of this matrix and the decay of its off-diagonal entries, we prove the condensation of the eigenmodes at one edge of the structure by showing the exponential decay of its pseudo-eigenvectors. In particular, we consider a range-k approximation to keep the long-range interaction to a certain extent, thus obtaining a k-banded gauge capacitance matrix CN,kγ\mathcal{C}_{N,k}^\gamma . Using techniques for Toeplitz matrices and operators, we establish the exponential decay of the pseudo-eigenvectors of CN,kγ\mathcal{C}_{N,k}^\gamma and demonstrate that they approximate those of the gauge capacitance matrix CNγ\mathcal{C}_N^\gamma well. Our results are numerically verified. In particular, we show that long-range interactions affect only the first eigenmodes in the system. As a result, a tridiagonal approximation of the gauge capacitance matrix, similar to the nearest-neighbour approximation in quantum mechanics, provides a good approximation for the higher modes. Moreover, we also illustrate numerically the behaviour of the eigenmodes and the stability of the non-Hermitian skin effect with respect to disorder in a variety of three-dimensional structures.

Keywords

Cite

@article{arxiv.2311.10521,
  title  = {The Non-Hermitian Skin Effect With Three-Dimensional Long-Range Coupling},
  author = {Habib Ammari and Silvio Barandun and Jinghao Cao and Bryn Davies and Erik Orvehed Hiltunen and Ping Liu},
  journal= {arXiv preprint arXiv:2311.10521},
  year   = {2023}
}

Comments

32 pages, 11 figures

R2 v1 2026-06-28T13:24:14.732Z