Scale-tailored localization and its observation in non-Hermitian electrical circuits.

Nat Commun

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.

Published: October 2024

AI Article Synopsis

  • The study introduces a new localization phenomenon called scale-tailored localization, which arises from long-range asymmetric coupling in wave systems.
  • This phenomenon affects the energy spectra and eigenstates of the system by creating multiple pathways on the lattice, leading to uniquely scaling localized modes.
  • Experimental observations in non-Hermitian electrical circuits demonstrate this effect, offering insight into non-Hermiticity and new ways to control wave localization in practical applications.

Article Abstract

Anderson localization and non-Hermitian skin effect are two paradigmatic wave localization phenomena, resulting from wave interference and the intrinsic non-Hermitian point gap, respectively. In this study, we unveil a novel localization phenomenon associated with long-range asymmetric coupling, termed scale-tailored localization, where the number of induced localized modes and their localization lengths scale exclusively with the coupling range. We show that the long-range coupling fundamentally reshapes the energy spectra and eigenstates by creating multiple connected paths on the lattice. Furthermore, we present experimental observations of scale-tailored localization in non-Hermitian electrical circuits utilizing adjustable voltage followers and switches. The circuit admittance spectra possess separate point-shaped and loop-shaped components in the complex energy plane, corresponding respectively to skin modes and scale-tailored localized states. Our findings not only expand and deepen the understanding of peculiar effects induced by non-Hermiticity but also offer a feasible experimental platform for exploring and controlling wave localizations.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11496883PMC
http://dx.doi.org/10.1038/s41467-024-53434-8DOI Listing

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Scale-tailored localization and its observation in non-Hermitian electrical circuits.

Nat Commun

October 2024

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.

Article Synopsis
  • The study introduces a new localization phenomenon called scale-tailored localization, which arises from long-range asymmetric coupling in wave systems.
  • This phenomenon affects the energy spectra and eigenstates of the system by creating multiple pathways on the lattice, leading to uniquely scaling localized modes.
  • Experimental observations in non-Hermitian electrical circuits demonstrate this effect, offering insight into non-Hermiticity and new ways to control wave localization in practical applications.
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