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Circuit Implementation of a Four-Dimensional Topological Insulator

Physics

Circuit Implementation of a Four-Dimensional Topological Insulator

Y. Wang, H. M. Price, et al.

This groundbreaking research by You Wang, Hannah M. Price, Baile Zhang, and Y. D. Chong unveils a four-dimensional topological insulator crafted through electric circuits, revealing topological surface states associated with a non-zero second Chern number. Explore the unprecedented realm of high-dimensional topological models demonstrated in this study!... show more
Abstract
The classification of topological insulators predicts the existence of high-dimensional topological phases that cannot occur in real materials, as these are limited to three or fewer spatial dimensions. We use electric circuits to experimentally implement a four-dimensional (4D) topological lattice. The lattice dimensionality is established by circuit connections, and not by mapping to a lower-dimensional system. On the lattice's three-dimensional surface, we observe topological surface states that are associated with a nonzero second Chern number but vanishing first Chern numbers. The 4D lattice belongs to symmetry class AI, which refers to time-reversal-invariant and spinless systems with no special spatial symmetry. Class AI is topologically trivial in one to three spatial dimensions, so 4D is the lowest possible dimension for achieving a topological insulator in this class. This work paves the way to the use of electric circuits for exploring high-dimensional topological models.
Publisher
Nature Communications
Published On
May 12, 2020
Authors
You Wang, Hannah M. Price, Baile Zhang, Y. D. Chong
Tags
four-dimensional
topological insulator
electric circuits
Chern number
symmetry class
high-dimensional models
experimental implementation
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