We have applied the recently developed theory of topological Uhlmann numbers to a representative model of a topological insulator in two dimensions, the Qi-Wu-Zhang model. We have found a stable symmetry-protected topological phase under external thermal fluctuations in two dimensions. A complete phase diagram for this model is computed as a function of temperature and coupling constants in the original Hamiltonian. It shows the appearance of large stable phases of matter with topological properties compatible with thermal fluctuations or external noise and the existence of critical lines separating abruptly trivial phases from topological phases. These novel critical temperatures represent thermal topological phase transitions. The initial...
As condensed matter theorists, we always try to seek new quantum phases of matter that are not possi...
The interplay between topology and interactions on the edge of a two-dimensional topological insulat...
We have studied the dynamical thermal effects on the protected end states of a topological insulator...
We construct a topological invariant that classifies density matrices of symmetry-protected topologi...
We introduce the Uhlmann geometric phase as a tool to characterize symmetry-protected topological ph...
Topological insulators (superconductors) are materials that host symmetry-protected metallic edge st...
For a long time, it was believed that the Ginzburg-Landau formalism was able to classify all differe...
We consider the Haldane model, a 2D topological insulator whose phase is defined by the Chern number...
Topological insulators and superconductors at finite temperature can be characterized by the topolog...
Superfluids and superconductors can be either fully gapped or gapless with nodal structures in momen...
We study finite-temperature topological properties of the Kitaev’s spin-honeycomb model in the vorte...
We address the question of whether symmetry-protected topological (SPT) order can persist at nonzero...
The Uhlmann phase, which reflects the holonomy as the purified state of a density matrix traverses a...
Topological states of matter are a novel family of phases that elude the conventional Landau paradig...
The study of non-equilibrium properties in topological systems is of practical and fundamental impor...
As condensed matter theorists, we always try to seek new quantum phases of matter that are not possi...
The interplay between topology and interactions on the edge of a two-dimensional topological insulat...
We have studied the dynamical thermal effects on the protected end states of a topological insulator...
We construct a topological invariant that classifies density matrices of symmetry-protected topologi...
We introduce the Uhlmann geometric phase as a tool to characterize symmetry-protected topological ph...
Topological insulators (superconductors) are materials that host symmetry-protected metallic edge st...
For a long time, it was believed that the Ginzburg-Landau formalism was able to classify all differe...
We consider the Haldane model, a 2D topological insulator whose phase is defined by the Chern number...
Topological insulators and superconductors at finite temperature can be characterized by the topolog...
Superfluids and superconductors can be either fully gapped or gapless with nodal structures in momen...
We study finite-temperature topological properties of the Kitaev’s spin-honeycomb model in the vorte...
We address the question of whether symmetry-protected topological (SPT) order can persist at nonzero...
The Uhlmann phase, which reflects the holonomy as the purified state of a density matrix traverses a...
Topological states of matter are a novel family of phases that elude the conventional Landau paradig...
The study of non-equilibrium properties in topological systems is of practical and fundamental impor...
As condensed matter theorists, we always try to seek new quantum phases of matter that are not possi...
The interplay between topology and interactions on the edge of a two-dimensional topological insulat...
We have studied the dynamical thermal effects on the protected end states of a topological insulator...