Entanglement Entropy of Random Fractional Quantum Hall Systems
arXiv:1007.4202 · doi:10.1088/1367-2630/13/5/055006
Abstract
The entanglement entropy of the and quantum Hall states in the presence of short range random disorder has been calculated by direct diagonalization. A microscopic model of electron-electron interaction is used, electrons are confined to a single Landau level and interact with long range Coulomb interaction. For very weak disorder, the values of the topological entanglement entropy are roughly consistent with expected theoretical results. By considering a broader range of disorder strengths, the fluctuation in the entanglement entropy was studied in an effort to detect quantum phase transitions. In particular, there is a clear signature of a transition as a function of the disorder strength for the state. Prospects for using the density matrix renormalization group to compute the entanglement entropy for larger system sizes are discussed.
29 pages, 16 figures; fixed figures and figure captions; revised fluctuation calculations
References in corpus (14)
- Non-Abelian Anyons and Topological Quantum Computation
- Entanglement Spectrum as a Generalization of Entanglement Entropy: Identification of Topological Order in Non-Abelian Fractional Quantum Hall Effect States
- Quantum Noise as an Entanglement Meter
- Entanglement entropy in fermionic Laughlin states
- Topological Entanglement Renyi Entropy and Reduced Density Matrix Structure
- The entanglement gap and a new principle of adiabatic continuity
- Density Matrix Renormalization Group Study of Incompressible Fractional Quantum Hall States
- Bipartite entanglement entropy in fractional quantum Hall states
- Topological Entanglement Entropy from the Holographic Partition Function
- Quantum noise and entanglement generated by a local quantum quench
- Entanglement signatures of quantum Hall phase transitions
- Entanglement Scaling of Fractional Quantum Hall states through Geometric Deformations
- Skyrmions in the Moore-Read state at nu=5/2
- Topological Entropy of Quantum Hall States in Rotating Bose Gases
Cited by in corpus (6)
- Quantum Entanglement as a Diagnostic of Phase Transitions in Disordered Fractional Quantum Hall Liquids
- Focus on topological quantum computation
- Evolution of quantum entanglement with disorder in fractional quantum Hall liquids
- Short and Long Ranged Impurities in Fractional Quantum Hall Systems
- Stability of Fractional Quantum Hall States in Disordered Photonic Systems
- Disorder-driven phase transitions in bosonic fractional quantum Hall liquids