Quantum exciton solid with embedded electron-hole solids in double-layer WSe2
arXiv:2604.03740 · doi:10.1103/7y5q-r7zj
Abstract
We studied double-layer WSe2 stacked on opposite sides of thin layers of hexagonal Boron nitride with different densities of electrons and holes. For a fixed hole density, the Coulomb drag resistance is found to exhibit plateaus approximately equal to and as the electron density is changed. When the number of electrons is equal to the number of holes, an exciton solid forms whose transport of quantum edge defects gives rise to the drag resistance. When the electron and hole densities are different, the excess electrons form a solid embedded in the exciton solid. The Coulomb drag resistance of the exciton solid comes from the one-dimensional transport of the two lowest energy channels of quantum edge vacancy-interstitial pairs. This corresponds to the first plateau. With the embedded solid, one of these channels is blocked. This corresponds to the second plateau. Transport experiments in the Corbino geometry with no edges and extra heavier holes were carried out. The plateaus disappeared. Three peaks in the resistance at different hole densities were observed. We interpret that the three peaks correspond to the commensurate exciton and two classes of hole solids. We performed phonon calculations of these states and found that the stability of these exciton-based quantum solids shows good agreement with experiment. Our results establish classes of extreme quantum solid states, opening additional avenues for the study of strongly correlated quantum transport phenomena involving quantum defect states.
12 pages, 4 figures
References in corpus (17)
- High-temperature superfluidity with indirect excitons in van der Waals heterostructures
- Low Temperature Shear Modulus Changes in Solid 4-He and Connection to Supersolidity
- Counterflow measurements in strongly correlated GaAs hole bilayers: evidence for electron-hole pairing
- Vanishing Hall Resistance at High Magnetic Field in a Double Layer Two-Dimensional Electron System
- Excitonic superfluid phase in Double Bilayer Graphene
- Quantum Hall Drag of Exciton Superfluid in Graphene
- Coulomb drag
- Disorder and the Supersolid State of Solid He
- Gate-Tuned Spontaneous Exciton Insulator in Double-Quantum Wells
- Electron-hole pairing in graphene-GaAs heterostructures
- Wigner supersolid of excitons in electron-hole bilayers
- Chester supersolid of spatially indirect excitons in double-layer semiconductor heterostructures
- Evidence for a Superfluid-to-solid Transition of Bilayer Excitons
- Exciton solid in bilayer two dimensional electron-hole systems
- Exciton Transport in a Bilayer Quantum Hall Superfluid
- Metal-insulator transitions in bilayer electron-hole systems in transition metal dicalcogenides
- Quantum solid phase and Coulomb drag in two-dimensional electron-electron bilayers of MoS2