Topological insulators and superconductors at finite temperature can be characterized by the topological Uhlmann phase. However, a direct experimental measurement of this invariant has remained elusive in condensed matter systems. Here, we report a measurement of the topological Uhlmann phase for a topological insulator simulated by a system of entangled qubits in the IBM Quantum Experience platform. By making use of ancilla states, otherwise unobservable phases carrying topological information about the system become accessible, enabling the experimental determination of a complete phase diagram including environmental effects. We employ a state-independent measurement protocol which does not involve prior knowledge of the system state. Th...
We study the time evolution of geometric phases of one dimensional topological models under the quen...
For a long time, quantum states of matter have been successfully characterized by the Ginzburg-Land...
We propose a realistic scheme to quantum simulate the so-far experimentally unobserved topological M...
Topological insulators and superconductors at finite temperature can be characterized by the topolog...
We introduce the Uhlmann geometric phase as a tool to characterize symmetry-protected topological ph...
We have applied the recently developed theory of topological Uhlmann numbers to a representative mod...
The Uhlmann phase, which reflects the holonomy as the purified state of a density matrix traverses a...
Quantum computers promise to perform computations beyond the reach of modern computers with profound...
Topological protection is employed in fault-tolerant error correction and in developing quantum algo...
Differently from the majority of the other phases of matter, which are characterized by local order ...
Topological phenomena in physical systems are determined by topological structures and are thus univ...
We construct a topological invariant that classifies density matrices of symmetry-protected topologi...
A peculiar feature of the majority of three-dimensional topological insulator surface states studied...
The combination of quantum effects and interactions in quantum many-body systems can result in exoti...
Topological states of matter are a novel family of phases that elude the conventional Landau paradig...
We study the time evolution of geometric phases of one dimensional topological models under the quen...
For a long time, quantum states of matter have been successfully characterized by the Ginzburg-Land...
We propose a realistic scheme to quantum simulate the so-far experimentally unobserved topological M...
Topological insulators and superconductors at finite temperature can be characterized by the topolog...
We introduce the Uhlmann geometric phase as a tool to characterize symmetry-protected topological ph...
We have applied the recently developed theory of topological Uhlmann numbers to a representative mod...
The Uhlmann phase, which reflects the holonomy as the purified state of a density matrix traverses a...
Quantum computers promise to perform computations beyond the reach of modern computers with profound...
Topological protection is employed in fault-tolerant error correction and in developing quantum algo...
Differently from the majority of the other phases of matter, which are characterized by local order ...
Topological phenomena in physical systems are determined by topological structures and are thus univ...
We construct a topological invariant that classifies density matrices of symmetry-protected topologi...
A peculiar feature of the majority of three-dimensional topological insulator surface states studied...
The combination of quantum effects and interactions in quantum many-body systems can result in exoti...
Topological states of matter are a novel family of phases that elude the conventional Landau paradig...
We study the time evolution of geometric phases of one dimensional topological models under the quen...
For a long time, quantum states of matter have been successfully characterized by the Ginzburg-Land...
We propose a realistic scheme to quantum simulate the so-far experimentally unobserved topological M...