Observation of weakened V-V dimers in the monoclinic metallic phase of strained VO2
arXiv:1903.05576 · doi:10.1103/PhysRevLett.121.256403
Abstract
Emergent order at mesoscopic length scales in condensed matter can provide fundamental insight into the underlying competing interactions and their relationship with the order parameter. Using spectromicroscopy, we show that mesoscopic stripe order near the metal-insulator transition (MIT) of strained VO2 represent periodic modulations in both crystal symmetry and V-V dimerization. Above the MIT, we unexpectedly find the long range order of V-V dimer strength and crystal symmetry become dissociated beyond ~ 200 nm, whereas the conductivity transition proceeds homogeneously in a narrow temperature range.
References in corpus (7)
- Orbital-assisted metal-insulator transition in VO
- VO2: A Novel View from Band Theory
- Direct Observation of Decoupled Structural and Electronic Transitions and an Ambient Pressure Monoclinic-Like Metallic Phase of VO
- The insulating phases of vanadium dioxide are Mott-Hubbard insulators
- Large epitaxial bi-axial strain induces a Mott-like phase transition in VO2
- Photoemission evidence for crossover from Peierls-like to Mott-like transition in highly strained VO
- Strain dependence of bonding and hybridization across the metal-insulator transition of VO2