Lattice materials with topological states optimized on demand

P Pegah Azizi (Department of Civil, Environmental, and Geo- Engineering) R Rahul Dev Kundu (Department of Civil and Environmental Engineering) W Weichen Li (Department of Civil and Environmental Engineering) K Kai Sun X Xiaojia Shelly Zhang (Department of Civil and Environmental Engineering) S Stefano Gonella (Department of Civil, Environmental, and Geo- Engineering)

Abstract

Topological states of matter, first discovered in quantum systems, have opened new avenues for wave manipulation beyond the quantum realm. In elastic media, realizing these topological effects requires identifying lattices that support the corresponding topological bands. However, among the vast number of theoretically predicted topological states, only a small fraction has been physically realized. To close this gap, we present a strategy capable of systematically and efficiently discovering metamaterials with desired topological state. Our approach builds on topological quantum chemistry, which systematically classifies topological states by analyzing symmetry properties at selected wavevectors. Because this method condenses the topological character into mathematical information at a small set of wavevectors, it encodes a clear and computationally efficient objective for topology optimization algorithms. We demonstrate that, for certain lattice symmetries, this classification can be further reduced to intuitive morphological features of the phonon band structure. By incorporating these band morphology constraints into topology optimization algorithms and further fabricating obtained designs, we enable the automated discovery and physical realization of metamaterials with targeted topological properties. This methodology establishes a paradigm for engineering topological elastic lattices on demand, addressing the bottleneck in material realization and paving the way for a comprehensive database of topological metamaterial configurations.

Article Details

Volume / Issue Vol. 122, Issue 32
Published August 12, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (6)

P

Pegah Azizi

Department of Civil, Environmental, and Geo- Engineering

R

Rahul Dev Kundu

Department of Civil and Environmental Engineering

W

Weichen Li

Department of Civil and Environmental Engineering

K

Kai Sun

X

Xiaojia Shelly Zhang

Department of Civil and Environmental Engineering

S

Stefano Gonella

Department of Civil, Environmental, and Geo- Engineering