The process by which open quantum systems thermalize with an environment is both of fundamental interest and relevant to noisy quantum devices. As a minimal model of this process, we consider a qudit chain evolving under local random unitaries and local depolarization channels. After mapping to a statistical mechanics model, the depolarization (noise) acts like a symmetry-breaking field, and we argue that it causes the system to thermalize within a timescale independent of system size. We show that various bipartite entanglement measures -- mutual information, operator entanglement, and entanglement negativity -- grow at a speed proportional to the size of the bipartition boundary. As a result, these entanglement measures obey an area law: ...
We investigate entanglement dynamics in continuously monitored open quantum systems featuring curren...
Whether noisy quantum devices without error correction can provide quantum advantage over classical ...
We investigate entanglement dynamics in continuously monitored open quantum systems featuring curren...
The central philosophy of statistical mechanics (stat-mech) and random-matrix theory of complex syst...
Characterizing how entanglement grows with time in a many-body system, for example, after a quantum ...
Characterizing how entanglement grows with time in a many-body system, for example, after a quantum ...
Most states in the Hilbert space are maximally entangled. This fact has proven useful to investigate...
Random quantum circuit is a minimally structured model to study the entanglement dynamics of many-bo...
Most states in the Hilbert space are maximally entangled. This fact has proven useful to investigate...
Most states in the Hilbert space are maximally entangled. This fact has proven useful to investigate...
Quenched randomness can have a dramatic effect on the dynamics of isolated 1D quantum many-body syst...
Quenched randomness can have a dramatic effect on the dynamics of isolated 1D quantum many-body syst...
Inspired by the Hayden-Preskill protocol for black hole evaporation, we consider the dynamics of a q...
Inspired by the Hayden-Preskill protocol for black hole evaporation, we consider the dynamics of a q...
In this paper we continue to explore "hybrid" quantum circuit models in one-dimension with both unit...
We investigate entanglement dynamics in continuously monitored open quantum systems featuring curren...
Whether noisy quantum devices without error correction can provide quantum advantage over classical ...
We investigate entanglement dynamics in continuously monitored open quantum systems featuring curren...
The central philosophy of statistical mechanics (stat-mech) and random-matrix theory of complex syst...
Characterizing how entanglement grows with time in a many-body system, for example, after a quantum ...
Characterizing how entanglement grows with time in a many-body system, for example, after a quantum ...
Most states in the Hilbert space are maximally entangled. This fact has proven useful to investigate...
Random quantum circuit is a minimally structured model to study the entanglement dynamics of many-bo...
Most states in the Hilbert space are maximally entangled. This fact has proven useful to investigate...
Most states in the Hilbert space are maximally entangled. This fact has proven useful to investigate...
Quenched randomness can have a dramatic effect on the dynamics of isolated 1D quantum many-body syst...
Quenched randomness can have a dramatic effect on the dynamics of isolated 1D quantum many-body syst...
Inspired by the Hayden-Preskill protocol for black hole evaporation, we consider the dynamics of a q...
Inspired by the Hayden-Preskill protocol for black hole evaporation, we consider the dynamics of a q...
In this paper we continue to explore "hybrid" quantum circuit models in one-dimension with both unit...
We investigate entanglement dynamics in continuously monitored open quantum systems featuring curren...
Whether noisy quantum devices without error correction can provide quantum advantage over classical ...
We investigate entanglement dynamics in continuously monitored open quantum systems featuring curren...