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Experimental observation of interconversion of non-Hermitian skin effect and Anderson localization in a nonreciprocal topological circuit based on Aubry-André model

  • Lianlian Du
  • , Yahong Liu
  • , Miao Shi
  • , Song Wang
  • , Yue He
  • , Xin Zhou
  • , Xiaoyong Yang
  • , Liyun Tao
  • , Kun Song
  • , Zhenfei Li
  • , Xiaopeng Zhao
  • Northwestern Polytechnical University Xian
  • Beijing Microelectronics Technology Institute
  • Xi'an Mingde Institute of Technology
  • National Research Institute of Radio Spectrum Management

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

The non-Hermitian skin effect (NHSE) is a phenomenon that emerges in non-Hermitian systems. Non-Hermitian systems can be flexibly realized by introducing non-Hermitian terms in circuits. In topolectrical circuits, nonreciprocal hopping is realized by scaling linear elements, which introduces non-Hermitian terms. In this work, we report the experimental realization of the NHSE in such nonreciprocal circuits. By introducing a quasiperiodic potential, the experimental realization of the interconversion between the NHSE and Anderson localization (AL) is observed in a nonreciprocal quasiperiodic circuit based on the nonreciprocal Aubry-André (AA) model, which undergoes a skin-effect–localization phase transition depending on the strength of the quasiperiodic potential. In addition, we design and fabricate a dedicated circuit board with preset component slots, enabling continuous tuning of circuit parameters without the need for multiple circuit boards. This flexible platform allows us to experimentally identify the phase-transition point between the NHSE and AL. Our results fill an important gap in previous studies, where this transition point had not been precisely characterized. Our circuit system also provides a simpler platform to explore localization phenomena in nonreciprocal systems.

Original languageEnglish
Article number115417
Pages (from-to)1-8
Number of pages8
JournalPhysical Review B
Volume112
Issue number11
DOIs
StatePublished - 10 Sep 2025

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