Back to Search Start Over

Realization of quasicrystalline quadrupole topological insulators in electrical circuits

Authors :
Lv, Bo
Chen, Rui
Li, Rujiang
Guan, Chunying
Zhou, Bin
Dong, Guohua
Zhao, Chao
Li, YiCheng
Wang, Ying
Tao, Huibin
Shi, Jinhui
Xu, Dong-Hui
Publication Year :
2021

Abstract

Quadrupole topological insulators are a new class of topological insulators with quantized quadrupole moments, which support protected gapless corner states. The experimental demonstrations of quadrupole-topological insulators were reported in a series of artificial materials, such as photonic crystals, acoustic crystals, and electrical circuits. In all these cases, the underlying structures have discrete translational symmetry and thus are periodic. Here we experimentally realize two-dimensional aperiodic-quasicrystalline quadrupole-topological insulators by constructing them in electrical circuits, and observe the spectrally and spatially localized corner modes. In measurement, the modes appear as topological boundary resonances in the corner impedance spectra. Additionally, we demonstrate the robustness of corner modes on the circuit. Our circuit design may be extended to study topological phases in higher-dimensional aperiodic structures.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2104.05295
Document Type :
Working Paper
Full Text :
https://doi.org/10.1038/s42005-021-00610-7