We introduce an analytic approach to many-body localization (MBL) in random spin chains. We consider MBL within a first quantized framework where it becomes a localization phenomenon in the high-dimensional lattice defined by the Hilbert space of the clean system. Designed in analogy with the field-theory description of single particle localization, our approach describes wave package propagation on that lattice after a disorder average has been performed and the system is controlled by only a few universal parameters. We discuss the stability of an ergodic weak disorder and a localized strong disorder phase, respectively, and demonstrate that the latter is protected by mechanisms which put MBL outside the universality class of Anderson loc...
Many-body localisation is studied in a disordered quantum spin-1/2 chain with long-ranged power-law ...
© 2017 American Physical Society. We propose a theory that describes quantitatively the (in)stabilit...
Many-body localization (MBL) addresses the absence of thermalization in interacting quantum systems,...
A canonical model for many-body localization (MBL) is studied, of interacting spinless fermions on a...
A canonical model for many-body localization (MBL) is studied, of interacting spinless fermions on a...
Quantum spin chains provide some of the mathematically most accessible examples of quantum many-body...
Many-body localisation (MBL) in closed quantum systems can often be understood in terms of the fract...
4+3 pages, 5+3 figuresInternational audienceWe present a large scale exact diagonalization study of ...
We study the breaking of ergodicity measured in terms of return probability in the evolution of a qu...
The venerable phenomena of Anderson localization, along with the much more recent many-body localiza...
The venerable phenomena of Anderson localization, along with the much more recent many-body localiza...
Many-body localisation is studied in a disordered quantum spin-1/2 chain with long-ranged power-law ...
The venerable phenomena of Anderson localization, along with the much more recent many-body localiza...
The venerable phenomena of Anderson localization, along with the much more recent many-body localiza...
Many-body localisation is studied in a disordered quantum spin-1/2 chain with long-ranged power-law ...
Many-body localisation is studied in a disordered quantum spin-1/2 chain with long-ranged power-law ...
© 2017 American Physical Society. We propose a theory that describes quantitatively the (in)stabilit...
Many-body localization (MBL) addresses the absence of thermalization in interacting quantum systems,...
A canonical model for many-body localization (MBL) is studied, of interacting spinless fermions on a...
A canonical model for many-body localization (MBL) is studied, of interacting spinless fermions on a...
Quantum spin chains provide some of the mathematically most accessible examples of quantum many-body...
Many-body localisation (MBL) in closed quantum systems can often be understood in terms of the fract...
4+3 pages, 5+3 figuresInternational audienceWe present a large scale exact diagonalization study of ...
We study the breaking of ergodicity measured in terms of return probability in the evolution of a qu...
The venerable phenomena of Anderson localization, along with the much more recent many-body localiza...
The venerable phenomena of Anderson localization, along with the much more recent many-body localiza...
Many-body localisation is studied in a disordered quantum spin-1/2 chain with long-ranged power-law ...
The venerable phenomena of Anderson localization, along with the much more recent many-body localiza...
The venerable phenomena of Anderson localization, along with the much more recent many-body localiza...
Many-body localisation is studied in a disordered quantum spin-1/2 chain with long-ranged power-law ...
Many-body localisation is studied in a disordered quantum spin-1/2 chain with long-ranged power-law ...
© 2017 American Physical Society. We propose a theory that describes quantitatively the (in)stabilit...
Many-body localization (MBL) addresses the absence of thermalization in interacting quantum systems,...