Nonlinear conduction via solitons in a topological mechanical insulator
arXiv:1404.2263 · doi:10.1073/pnas.1405969111
Abstract
Networks of rigid bars connected by joints, termed linkages, provide a minimal framework to design robotic arms and mechanical metamaterials built out of folding components. Here, we investigate a chain-like linkage that, according to linear elasticity, behaves like a topological mechanical insulator whose zero-energy modes are localized at the edge. Simple experiments we performed using prototypes of the chain vividly illustrate how the soft motion, initially localized at the edge, can in fact propagate unobstructed all the way to the opposite end. We demonstrate using real prototypes, simulations and analytical models that the chain is a mechanical conductor, whose carriers are nonlinear solitary waves, not captured within linear elasticity. Indeed, the linkage prototype can be regarded as the simplest example of a topological metamaterial whose protected mechanical excitations are solitons, moving domain walls between distinct topological mechanical phases. More practically, we have built a topologically protected mechanism that can perform basic tasks such as transporting a mechanical state from one location to another. Our work paves the way towards adopting the principle of topological robustness in the design of robots assembled from activated linkages as well as in the fabrication of complex molecular nanostructures.
9 pages, 9 figures, see http://lorentz.leidenuniv.nl/~chen/kinks for Supporting movies. v2: New section in appendix, new figures
References in corpus (1)
Cited by in corpus (49)
- Observation of phononic helical edge states in a mechanical 'topological insulator'
- Topological acoustics
- Topological modes bound to dislocations in mechanical metamaterials
- Double-Weyl phonons in transition-metal monosilicides
- Non-reciprocal topological solitons in active metamaterials
- Topological Thermal Hall Effect in Frustrated Kagomé Antiferromagnets
- Self-induced topological transition in phononic crystals by nonlinearity management
- Chiral edge mode in the coupled dynamics of magnetic solitons in a honeycomb lattice
- Kink-antikink asymmetry and impurity interactions in topological mechanical chains
- Transition from topological to chaos in the nonlinear Su-Schrieffer-Heeger model
- Mechanical Graphene
- Soft mechanical metamaterials with transformable topology protected by stress caching
- Sticky-sphere clusters
- Nonlinear Topological Mechanics in Elliptically Geared Isostatic Metamaterials
- Topological elasticity of non-orientable ribbons
- Data-driven discovery and extrapolation of parameterized pattern-forming dynamics
- Topologically protected colloidal transport above a square magnetic lattice
- Learning to self-fold at a bifurcation
- Synthetically Non-Hermitian Nonlinear Wave-like Behavior in a Topological Mechanical Metamaterial
- Omnimodal topological polarization of bilayer networks: analysis in the Maxwell limit and experiments on a 3D-printed prototype
- Experimental demonstration of position-controllable topological interface states in high-frequency topological integrated circuits
- Fully-Polarized Topological Isostatic Metamaterials in Three Dimensions
- Simultaneous and independent topological control of identical microparticles in non-periodic energy landscapes
- Non-reciprocal breathing solitons
- Quantum metric dependent anomalous velocity in systems subject to complex electric fields
- Hopf Bifurcation of Nonlinear Non-Hermitian Skin Effect
- Nonlinear Corner States in Topologically Nontrivial Kagome Lattice
- Spiking at the edge
- Controlling the configuration space topology of mechanisms
- Supersymmetry on the lattice: Geometry, Topology, and Flat Bands
- Standing and Traveling Waves in a Model of Periodically Modulated One-dimensional Waveguide Arrays
- Nonlinear Topological Edge States: from Dynamic Delocalization to Thermalization
- Geometric contribution to adiabatic amplification in non-Hermitian systems
- Ferromagnetism in armchair graphene nanoribbon heterostructures
- Predicting topological materials: symmetry-based indicator theories and beyond
- Non-reciprocity is necessary for robust dimensional reduction and strong responses in stochastic topological systems
- Scalable 3D printing for topological mechanical metamaterials
- Breaking Mechanical Holography in Combinatorial Metamaterials
- Hermitian and non-Hermitian topology in active matter
- Classifying topological floppy modes in the continuum
- Non-Linear Interference Challenging Topological Protection of Chiral Edge States
- Cell augmentation framework for topological lattices
- Opening and closing a bandgap via alternating softening and hardening nonlinearities
- Nonlinear dynamical topological phases in Cooper-pair box array
- Topological boundary states in engineered quantum-dot molecules on the InAs(111)A surface
- Electric circuit analog of Landau-Zener tunneling using time-varying elements
- 3D Topologically Polarized Elastic Metamaterials Enable Asymmetric Energy Isolation at Low Frequencies
- Nonlinearity-induced transition in heat conduction through a topological metamaterial of rotors
- Floquet solitons in square lattices: Existence, Stability and Dynamics