Recent developments in the field of the metal-insulator transition in two dimensions
arXiv:1811.11828 · doi:10.3390/app9061169
Abstract
We review the latest developments in the field of the metal-insulator transition in strongly-correlated two-dimensional electron systems. Particular attention is given to recent discoveries of a sliding quantum electron solid and interaction-induced spectrum flattening at the Fermi level in high-quality silicon-based structures.
As published
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Cited by in corpus (18)
- Competing correlated states around the zero field Wigner crystallization transition of electrons in two-dimensions
- Observation of an electronic microemulsion phase emerging from a quantum crystal-to-liquid transition
- Metal-insulator transition and low-density phases in a strongly-interacting two-dimensional electron system
- Fermion condensation, -linear resistivity and Planckian limit
- Electronic transport, metal-insulator transition, and Wigner crystallization in transition metal dichalcogenide monolayers
- Strain-gradient induced topological transition in bent nanoribbons of the Dirac semimetal Cd3As2
- Metallic state in a strongly interacting spinless two-valley electron system in two dimensions
- Manifestation of strong correlations in transport in ultra-clean SiGe/Si/SiGe quantum wells
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- Metal-insulator transition in the disordered Hubbard model of the Lieb lattice
- Drive Dependence of the Hall Angle for a Sliding Wigner Crystal in a Magnetic Field
- Spin effect on the low-temperature resistivity maximum in a strongly interacting 2D electron system
- Conductivity bound of the strongly interacting and disordered graphene from gauge/gravity duality
- Noise signal as input data in self-organized neural networks
- Nesting-driven ferromagnetism of itinerant electrons
- On-chip quantum confinement refrigeration overcoming electron-phonon heat leaks
- Universal transport at Lifshitz metal-insulator transitions in two dimensions
- Spin and valley effects on the quantum phase transition in two dimensions