Topological defects have strong impact on both elastic and inelastic properties of materials. In this article, we investigate the possibility to controllably inject topological defects in quantum simulators of solid state lattice structures. We investigate the quench dynamics of a Frenkel-Kontorova chain, which is used to model discommensurations of particles in cold atoms and trapped ionic crystals. The interplay between an external periodic potential and the inter-particle interaction makes lattice discommensurations, the topological defects of the model, energetically favorable and can tune a commensurate-incommensurate structural transition. Our key finding is that a quench from the commensurate to incommensurate phase causes a controll...
We investigate using local structural disorder to induce a topologically nontrivial phase in a solid...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
Topological defects shape the material and transport properties of physical systems. Examples range ...
Topological defects have strong impact on both elastic and inelastic properties of materials. In thi...
We explore the dynamics of a commensurate-incommensurate (C-IC) transition in a one-dimensional Fren...
Non-adiabatic crossing of symmetry breaking phase transitions results in formation of a domain stru...
Subject to a periodic drive, quantum materials can develop nontrivial bulk topological state, termed...
We study the non-equilibrium dynamics of two dimensional planar ion Coulomb crystals undergoing a st...
Bose-Hubbard models are simple paradigmatic lattice models used to study dynamics and phases of quan...
We present results of numerical studies of the Landau-Ginzburg dynamics of the order parameter in on...
Topological phases of matter have attracted the interest of physicists and engineers due to their no...
By resorting to some results in quantum field theories with spontaneous breakdown of symmetry, we sh...
We study the production of topological defects, in particular cosmic strings, during a phase transit...
9 pags., 5 figs., 2 tabs.In a scenario of spontaneous symmetry breaking in finite time, topological ...
The formation of dislocations, disclinations and their dynamics is central to our understanding of c...
We investigate using local structural disorder to induce a topologically nontrivial phase in a solid...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
Topological defects shape the material and transport properties of physical systems. Examples range ...
Topological defects have strong impact on both elastic and inelastic properties of materials. In thi...
We explore the dynamics of a commensurate-incommensurate (C-IC) transition in a one-dimensional Fren...
Non-adiabatic crossing of symmetry breaking phase transitions results in formation of a domain stru...
Subject to a periodic drive, quantum materials can develop nontrivial bulk topological state, termed...
We study the non-equilibrium dynamics of two dimensional planar ion Coulomb crystals undergoing a st...
Bose-Hubbard models are simple paradigmatic lattice models used to study dynamics and phases of quan...
We present results of numerical studies of the Landau-Ginzburg dynamics of the order parameter in on...
Topological phases of matter have attracted the interest of physicists and engineers due to their no...
By resorting to some results in quantum field theories with spontaneous breakdown of symmetry, we sh...
We study the production of topological defects, in particular cosmic strings, during a phase transit...
9 pags., 5 figs., 2 tabs.In a scenario of spontaneous symmetry breaking in finite time, topological ...
The formation of dislocations, disclinations and their dynamics is central to our understanding of c...
We investigate using local structural disorder to induce a topologically nontrivial phase in a solid...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
Topological defects shape the material and transport properties of physical systems. Examples range ...