The Quantized Hall Insulator: a "Quantum" Signature of a "Classical" Transport Regime?
arXiv:cond-mat/0406703 · doi:10.1142/S021798490400730X
Abstract
Experimental studies of the transitions from a primary quantum Hall (QH) liquid at filling factor 1/k (with k an odd integer) to the insulator have indicated a ``quantized Hall insulator'' (QHI) behavior: while the longitudinal resistivity diverges with decreasing temperature and current bias, the Hall resistivity remains quantized at the value . We review the experimental results and the theoretical studies addressing this phenomenon. In particular, we discuss a theoretical approach which employs a model of the insulator as a random network of weakly coupled puddles of QH liquid at fixed filling factor. This model is proved to exhibit a robust quantization of the Hall resistivity, provided the electron transport on the network is INCOHERENT. Subsequent theoretical studies have focused on the controversy whether the assumption of incoherence is necessary. The emergent conclusion is that in the quantum coherent transport regime, quantum interference destroys the QHI as a consequence of localization. Once the localization length becomes much shorter than the dephasing length, the Hall resistivity diverges. We conclude by mentioning some recent experimental observations and open questions.
A Brief Review, to be published in Mod. Phys. Lett. B
References in corpus (1)
Cited by in corpus (10)
- Quantized anomalous Hall resistivity achieved in molecular beam epitaxy-grown MnBi2Te4 thin films
- Quantum criticality at the Chern-to-normal insulator transition
- Quantum critical behaviour of the plateau-insulator transition in the quantum Hall regime
- Observation of the quantized Hall insulator in the quantum critical regime of the two-dimensional electron gas
- Characterization of the Quantized Hall Insulator Phase in the Quantum Critical Regime
- Quantum site percolation on triangular lattice and the integer quantum Hall effect
- Weakly chiral networks and 2D delocalized states in a weak magnetic field
- Real-space renormalization-group approach to the integer quantum Hall effect
- Self-duality of the integer quantum Hall to insulator transition: composite fermion description
- A simple microscopic description of quantum Hall transition without Landau levels