We provide a simple and predictive random-matrix framework that naturally generalizes Page's law for ergodic many-body systems by incorporating a finite entanglement localization length. By comparing a highly structured one-dimensional model to a completely unstructured model and a physical system, we uncover a remarkable degree of universality, suggesting that the effective localization length is a universal combination of model parameters up until it drops down to the microscopic scale
The space of one-dimensional disordered interacting quantum models displaying a many-body localizati...
Recent results [A. Lakshminarayan, Phys. Rev. E, vol.64, Page no. 036207 (2001)] indicate that it is...
Despite the exponentially large amount of information required in the quantum description of many-bo...
We provide a simple and predictive random-matrix framework that naturally generalizes Page's law for...
We derive exact expressions for the mean value of Meyer-Wallach entanglement Q for localized rando...
Many-body localization was proven under realistic assumptions by constructing a quasi-local unitary ...
The entanglement spectrum of the reduced density matrix contains information beyond the von Neumann ...
We study the strange nature of low-dimensional quantum systems in the presence of disorder, with a p...
We propose a new approach to probing ergodicity and its breakdown in one-dimensional quantum many-bo...
v3= 22 pages with NEW SECTION V on the multifractality of the entanglement spectrumInternational aud...
The intriguing phenomenon of many-body localization (MBL) has attracted significant interest recentl...
We theoretically study the quench dynamics for an isolated Heisenberg spin chain with a random on-si...
Recently it has been suggested that many-body localization (MBL) can occur in translation-invariant ...
4+3 pages, 5+3 figuresInternational audienceWe present a large scale exact diagonalization study of ...
Many-body localized systems in which interactions and disorder come together defy the expectations o...
The space of one-dimensional disordered interacting quantum models displaying a many-body localizati...
Recent results [A. Lakshminarayan, Phys. Rev. E, vol.64, Page no. 036207 (2001)] indicate that it is...
Despite the exponentially large amount of information required in the quantum description of many-bo...
We provide a simple and predictive random-matrix framework that naturally generalizes Page's law for...
We derive exact expressions for the mean value of Meyer-Wallach entanglement Q for localized rando...
Many-body localization was proven under realistic assumptions by constructing a quasi-local unitary ...
The entanglement spectrum of the reduced density matrix contains information beyond the von Neumann ...
We study the strange nature of low-dimensional quantum systems in the presence of disorder, with a p...
We propose a new approach to probing ergodicity and its breakdown in one-dimensional quantum many-bo...
v3= 22 pages with NEW SECTION V on the multifractality of the entanglement spectrumInternational aud...
The intriguing phenomenon of many-body localization (MBL) has attracted significant interest recentl...
We theoretically study the quench dynamics for an isolated Heisenberg spin chain with a random on-si...
Recently it has been suggested that many-body localization (MBL) can occur in translation-invariant ...
4+3 pages, 5+3 figuresInternational audienceWe present a large scale exact diagonalization study of ...
Many-body localized systems in which interactions and disorder come together defy the expectations o...
The space of one-dimensional disordered interacting quantum models displaying a many-body localizati...
Recent results [A. Lakshminarayan, Phys. Rev. E, vol.64, Page no. 036207 (2001)] indicate that it is...
Despite the exponentially large amount of information required in the quantum description of many-bo...