We demonstrate that the quantum mutual information (QMI) is a useful probe to study many-body localization (MBL). First, we focus on the detection of a metal-insulator transition for two different models, the noninteracting Aubry-Andre-Harper model and the spinless fermionic disordered Hubbard chain. We find that the QMI in the localized phase decays exponentially with the distance between the regions traced out, allowing us to define a correlation length, which converges to the localization length in the case of one particle. Second, we show how the QMI can be used as a dynamical indicator to distinguish an Anderson insulator phase from a MBL phase. By studying the spread of the QMI after a global quench from a random product state, we sho...
We predict quantum correlations between noninteracting particles evolving simultaneously in a disord...
Detecting many-body localization (MBL) typically requires the calculation of high-energy eigenstates...
Many-body localization (MBL) is an example of a dynamical phase of matter that avoids thermalization...
We demonstrate that the quantum mutual information (QMI) is a useful probe to study many-body locali...
We probe the existence of a many-body localized phase (MBL phase) in a spinless fermionic Hubbard ch...
Quantum information spreading and scrambling in many-body systems attract interests these days. Trip...
The many-body localization transition is a dynamical quantum phase transition between a localized an...
Detecting many-body localization (MBL) typically requires the calculation of high-energy eigenstates...
The intriguing phenomenon of many-body localization (MBL) has attracted significant interest recentl...
The many-body localization (MBL) transition is a quantum phase transition involving highly excited e...
We predict quantum correlations between noninteracting particles evolving simultaneously in a disord...
In one dimension, noninteracting particles can undergo a localization-delocalization transition in a...
We are able to detect clear signatures of dephasing - a distinct trait of many-body localization (MB...
There has been a surge of interest in studying truly nonequilibrium quantum many-body phenomena, mot...
In a non-equilibrium many-body system, the quantum information dynamics between non-complementary re...
We predict quantum correlations between noninteracting particles evolving simultaneously in a disord...
Detecting many-body localization (MBL) typically requires the calculation of high-energy eigenstates...
Many-body localization (MBL) is an example of a dynamical phase of matter that avoids thermalization...
We demonstrate that the quantum mutual information (QMI) is a useful probe to study many-body locali...
We probe the existence of a many-body localized phase (MBL phase) in a spinless fermionic Hubbard ch...
Quantum information spreading and scrambling in many-body systems attract interests these days. Trip...
The many-body localization transition is a dynamical quantum phase transition between a localized an...
Detecting many-body localization (MBL) typically requires the calculation of high-energy eigenstates...
The intriguing phenomenon of many-body localization (MBL) has attracted significant interest recentl...
The many-body localization (MBL) transition is a quantum phase transition involving highly excited e...
We predict quantum correlations between noninteracting particles evolving simultaneously in a disord...
In one dimension, noninteracting particles can undergo a localization-delocalization transition in a...
We are able to detect clear signatures of dephasing - a distinct trait of many-body localization (MB...
There has been a surge of interest in studying truly nonequilibrium quantum many-body phenomena, mot...
In a non-equilibrium many-body system, the quantum information dynamics between non-complementary re...
We predict quantum correlations between noninteracting particles evolving simultaneously in a disord...
Detecting many-body localization (MBL) typically requires the calculation of high-energy eigenstates...
Many-body localization (MBL) is an example of a dynamical phase of matter that avoids thermalization...