We investigate the disorder-driven phase transition from a fractional quantum Hall state to an Anderson insulator using quantum entanglement methods. We find that the transition is signaled by a sharp increase in the sensitivity of a suitably averaged entanglement entropy with respect to disorder - the magnitude of its disorder derivative appears to diverge in the thermodynamic limit. We also study the level statistics of the entanglement spectrum as a function of disorder. However, unlike the dramatic phase-transition signal in the entanglement entropy derivative, we find a gradual reduction of level repulsion only deep in the Anderson insulating phase
Final Version. Invited Article, for Special Issue of JSTAT on "Quantum Entanglement in Condensed Mat...
Final Version. Invited Article, for Special Issue of JSTAT on "Quantum Entanglement in Condensed Mat...
Final Version. Invited Article, for Special Issue of JSTAT on "Quantum Entanglement in Condensed Mat...
We investigate the disorder-driven phase transition from a fractional quantum Hall state to an Ander...
We introduce a measure called reduced entropy of sublattice to quantify entanglement in spin, electr...
We introduce a new measure called reduced entropy of sublattice to quantify entanglement in spin, el...
We study the behavior of two-dimensional electron gas in the fractional quantum Hall regime in the p...
13 pages, 10 figures, published versionInternational audienceThe nature of the state at low Landau-l...
13 pages, 10 figures, published versionInternational audienceThe nature of the state at low Landau-l...
13 pages, 10 figures, published versionInternational audienceThe nature of the state at low Landau-l...
We study the effects of disorder on the quantum Hall stripe phases in half-filled high Landau levels...
The understanding of the effects of disorder in condensed matter systems has been of great importan...
The understanding of the effects of disorder in condensed matter systems has been of great importan...
International audienceThe extended Bose-Hubbard model subjected to a disordered potential is predict...
International audienceThe extended Bose-Hubbard model subjected to a disordered potential is predict...
Final Version. Invited Article, for Special Issue of JSTAT on "Quantum Entanglement in Condensed Mat...
Final Version. Invited Article, for Special Issue of JSTAT on "Quantum Entanglement in Condensed Mat...
Final Version. Invited Article, for Special Issue of JSTAT on "Quantum Entanglement in Condensed Mat...
We investigate the disorder-driven phase transition from a fractional quantum Hall state to an Ander...
We introduce a measure called reduced entropy of sublattice to quantify entanglement in spin, electr...
We introduce a new measure called reduced entropy of sublattice to quantify entanglement in spin, el...
We study the behavior of two-dimensional electron gas in the fractional quantum Hall regime in the p...
13 pages, 10 figures, published versionInternational audienceThe nature of the state at low Landau-l...
13 pages, 10 figures, published versionInternational audienceThe nature of the state at low Landau-l...
13 pages, 10 figures, published versionInternational audienceThe nature of the state at low Landau-l...
We study the effects of disorder on the quantum Hall stripe phases in half-filled high Landau levels...
The understanding of the effects of disorder in condensed matter systems has been of great importan...
The understanding of the effects of disorder in condensed matter systems has been of great importan...
International audienceThe extended Bose-Hubbard model subjected to a disordered potential is predict...
International audienceThe extended Bose-Hubbard model subjected to a disordered potential is predict...
Final Version. Invited Article, for Special Issue of JSTAT on "Quantum Entanglement in Condensed Mat...
Final Version. Invited Article, for Special Issue of JSTAT on "Quantum Entanglement in Condensed Mat...
Final Version. Invited Article, for Special Issue of JSTAT on "Quantum Entanglement in Condensed Mat...