We utilize the concept of a measurement-induced entanglement transition to analyze the interplay and competition of processes that generate and destroy entanglement in a one-dimensional quantum spin chain evolving under a locally noisy and disordered Hamiltonian. We employ continuous measurements of variable strength to induce a transition from volume to area-law scaling of the steady-state entanglement entropy. While static background disorder systematically reduces the critical measurement strength, this critical value depends nonmonotonically on the strength of nonstatic noise. According to the extracted finite-size scaling exponents, the universality class of the transition is independent of the noise and disorder strength. We interpret...
We study the non-equilibrium evolution of concurrence of a Bell pair constituted of two qubits, thro...
We consider a dynamic protocol for quantum many-body systems, which enables us to study the interpla...
The process by which open quantum systems thermalize with an environment is both of fundamental inte...
We utilize the concept of a measurement-induced entanglement transition to analyze the interplay and...
We utilize the concept of a measurement-induced entanglement transition to analyze the interplay and...
We utilize the concept of a measurement-induced entanglement transition to analyze the interplay and...
Recent theoretical work has shown that the competition between coherent unitary dynamics and stochas...
Recent theoretical work has shown that the competition between coherent unitary dynamics and stochas...
We show that weak measurements can induce a quantum phase transition of interacting many-body system...
© 2019 authors. Published by the American Physical Society. We define dynamical universality classes...
We investigate multipartite entanglement dynamics in disordered spin-1∕2 lattice models exhibiting a...
We investigate multipartite entanglement dynamics in disordered spin-1∕2 lattice models exhibiting a...
We investigate entanglement dynamics in continuously monitored open quantum systems featuring curren...
We investigate entanglement dynamics in continuously monitored open quantum systems featuring curren...
We consider a dynamic protocol for quantum many-body systems, which enables us to study the interpla...
We study the non-equilibrium evolution of concurrence of a Bell pair constituted of two qubits, thro...
We consider a dynamic protocol for quantum many-body systems, which enables us to study the interpla...
The process by which open quantum systems thermalize with an environment is both of fundamental inte...
We utilize the concept of a measurement-induced entanglement transition to analyze the interplay and...
We utilize the concept of a measurement-induced entanglement transition to analyze the interplay and...
We utilize the concept of a measurement-induced entanglement transition to analyze the interplay and...
Recent theoretical work has shown that the competition between coherent unitary dynamics and stochas...
Recent theoretical work has shown that the competition between coherent unitary dynamics and stochas...
We show that weak measurements can induce a quantum phase transition of interacting many-body system...
© 2019 authors. Published by the American Physical Society. We define dynamical universality classes...
We investigate multipartite entanglement dynamics in disordered spin-1∕2 lattice models exhibiting a...
We investigate multipartite entanglement dynamics in disordered spin-1∕2 lattice models exhibiting a...
We investigate entanglement dynamics in continuously monitored open quantum systems featuring curren...
We investigate entanglement dynamics in continuously monitored open quantum systems featuring curren...
We consider a dynamic protocol for quantum many-body systems, which enables us to study the interpla...
We study the non-equilibrium evolution of concurrence of a Bell pair constituted of two qubits, thro...
We consider a dynamic protocol for quantum many-body systems, which enables us to study the interpla...
The process by which open quantum systems thermalize with an environment is both of fundamental inte...