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Static vector solitons in a topological mechanical lattice

Engineering and Technology

Static vector solitons in a topological mechanical lattice

Y. Zhou, Y. Zhang, et al.

Delve into the fascinating world of topological solitons and their interaction in mechanical systems! This groundbreaking research conducted by Yuan Zhou, Yafei Zhang, Jiaxin Long, Aoxi Wang, and Chang Qing Chen reveals how these quantized degrees of freedom can freely propagate through a purposefully designed lattice, featuring topologically protected boundary modes. Discover how they evolve along minimum energy pathways on a multistable potential energy surface.... show more
Abstract
Topological solitons, renowned for their stability and particle-like collision behaviors, have sparked interest in developing macroscopic-scale information processing devices. However, the exploration of interactions between multiple topological solitons in mechanical systems remains elusive. In this study, we construct a topological mechanical lattice supporting static vector solitons that represent quantized degrees of freedom and can freely propagate across the system. Drawing inspiration from coupled double atomic chains with sublattice symmetry breaking, we design a mechanical analogue featuring topologically protected boundary modes and induce independent modes to finite motions along branched motion pathways. Through a continuum theory, we describe the evolution of boundary modes with vector solitons composed of superposed kink solutions, identifying them as minimum energy pathways on the rugged effective potential surface with multiple degenerate ground states. Our results reveal the connection between transformable topological lattices and multistable systems, providing insight into nonlinear topological mechanics.
Publisher
Communications Physics
Published On
Apr 22, 2024
Authors
Yuan Zhou, Yafei Zhang, Jiaxin Long, Aoxi Wang, Chang Qing Chen
Tags
topological solitons
mechanical systems
vector solitons
lattice design
boundary modes
continuum theory
potential energy
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