A closed quantum system never forgets its initial state, but the encoded information can get scrambled and become inaccessible without measuring a large fraction of all the system degrees of freedom. This scrambling can be diagnosed by studying the spatial spreading of initially local operators under the Heisenberg time evolution, and the decay of the out-of-time-ordered correlators (OTOC). What insights can OTOCs provide to understand the dynamics of quantum many-body systems? What are the characteristic behaviors of OTOCs during the time evolution? How is information scrambling affected by the dissipation in open quantum many-body systems? We first study slow scrambling in many-body localized systems via calculating various correlators...
For the characterization of the dynamics in quantum many-body systems the question of how informatio...
How fast quantum information scrambles such that it becomes inaccessible by local probes turns out t...
Out-of-time ordered (OTO) correlation functions describe scrambling of information in correlated qua...
A closed quantum system never forgets its initial state, but the encoded information can get scrambl...
Chaotic dynamics in closed local quantum systems scrambles quantum information, which is manifested ...
Chaotic dynamics in closed local quantum systems scrambles quantum information, which is manifested ...
Chaotic dynamics in closed local quantum systems scrambles quantum information, which is manifested ...
Many quantitative approaches to the dynamical scrambling of information in quantum systems involve t...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum many-body scarred systems host special non-thermal eigenstates that support periodic revival...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
For the characterization of the dynamics in quantum many-body systems the question of how informatio...
How fast quantum information scrambles such that it becomes inaccessible by local probes turns out t...
Out-of-time ordered (OTO) correlation functions describe scrambling of information in correlated qua...
A closed quantum system never forgets its initial state, but the encoded information can get scrambl...
Chaotic dynamics in closed local quantum systems scrambles quantum information, which is manifested ...
Chaotic dynamics in closed local quantum systems scrambles quantum information, which is manifested ...
Chaotic dynamics in closed local quantum systems scrambles quantum information, which is manifested ...
Many quantitative approaches to the dynamical scrambling of information in quantum systems involve t...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum many-body scarred systems host special non-thermal eigenstates that support periodic revival...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
For the characterization of the dynamics in quantum many-body systems the question of how informatio...
How fast quantum information scrambles such that it becomes inaccessible by local probes turns out t...
Out-of-time ordered (OTO) correlation functions describe scrambling of information in correlated qua...