The intriguing phenomenon of many-body localization (MBL) has attracted significant interest recently, but a complete characterization is still lacking. In this work we introduce the total correlations, a concept from quantum information theory capturing multipartite correlations, to the study of this phenomenon. We demonstrate that the total correlations of the diagonal ensemble provides a meaningful diagnostic tool to pin-down, probe, and better understand the MBL transition and ergodicity breaking in quantum systems. In particular, we show that the total correlations has sublinear dependence on the system size in delocalized, ergodic phases, whereas we find that it scales extensively in the localized phase developing a pronounced peak at...
Thermalization of random-field Heisenberg spin chain is probed by time evolution of density correlat...
We study the transition from a many-body localized phase to an ergodic phase in spin chain with corr...
| openaire: EC/H2020/681311/EU//QUESSWe study the evolution and persistence of quantum and classical...
The intriguing phenomenon of many-body localization (MBL) has attracted significant interest recentl...
We introduce techniques for analyzing the structure of quantum states of many-body localized (MBL) s...
We propose a new approach to probing ergodicity and its breakdown in one-dimensional quantum many-bo...
Ergodic quantum many-body systems satisfy the eigenstate thermalization hypothesis (ETH). However, s...
We are able to detect clear signatures of dephasing—a distinct trait of many-body localization (MBL)...
Many-body localization (MBL) of a disordered interacting boson system in one dimension is studied nu...
We propose a new approach to probing ergodicity and its breakdown in one-dimensional quantum many-bo...
Since the seminal work of Anderson, localization has been recognized as a standard mechanism allowin...
This thesis is focused on many-body localization (MBL) and the development of algorithms using the t...
The phenomenon of many-body localized (MBL) systems has attracted significant interest in recent yea...
We study the transition from a many-body localized phase to an ergodic phase in spin chain with corr...
The many-body localization transition is a dynamical quantum phase transition between a localized an...
Thermalization of random-field Heisenberg spin chain is probed by time evolution of density correlat...
We study the transition from a many-body localized phase to an ergodic phase in spin chain with corr...
| openaire: EC/H2020/681311/EU//QUESSWe study the evolution and persistence of quantum and classical...
The intriguing phenomenon of many-body localization (MBL) has attracted significant interest recentl...
We introduce techniques for analyzing the structure of quantum states of many-body localized (MBL) s...
We propose a new approach to probing ergodicity and its breakdown in one-dimensional quantum many-bo...
Ergodic quantum many-body systems satisfy the eigenstate thermalization hypothesis (ETH). However, s...
We are able to detect clear signatures of dephasing—a distinct trait of many-body localization (MBL)...
Many-body localization (MBL) of a disordered interacting boson system in one dimension is studied nu...
We propose a new approach to probing ergodicity and its breakdown in one-dimensional quantum many-bo...
Since the seminal work of Anderson, localization has been recognized as a standard mechanism allowin...
This thesis is focused on many-body localization (MBL) and the development of algorithms using the t...
The phenomenon of many-body localized (MBL) systems has attracted significant interest in recent yea...
We study the transition from a many-body localized phase to an ergodic phase in spin chain with corr...
The many-body localization transition is a dynamical quantum phase transition between a localized an...
Thermalization of random-field Heisenberg spin chain is probed by time evolution of density correlat...
We study the transition from a many-body localized phase to an ergodic phase in spin chain with corr...
| openaire: EC/H2020/681311/EU//QUESSWe study the evolution and persistence of quantum and classical...