Hysteretic melting transition of a soliton lattice in a commensurate charge modulation
arXiv:1311.3015 · doi:10.1103/PhysRevLett.111.266401
Abstract
We report on the observation of the hysteretic transition of a commensurate charge modulation in IrTe from transport and scanning tunneling microscopy (STM) studies. Below the transition ( K on cooling) a charge modulation was observed, which is consistent with previous studies. Additional modulations [] appear below a second transition at K on cooling. The coexistence of various modulations persist up to on warming. The atomic structures of charge modulations and the temperature dependent STM studies suggest that 1/5 modulation is a periodic soliton lattice which partially melts below on cooling. Our results provide compelling evidence that the ground state of IrTe is a commensurate 1/6 charge modulation, which originates from periodic dimerization of Te atoms visualized by atomically resolved STM images.
5 pages, 5 figures
References in corpus (8)
- A quantum phase transition from triangular to stripe charge order in NbSe
- Superconductivity Induced by Bond Breaking in the Triangular Lattice of IrTe2
- Structural phase transition in IrTe: A combined study of optical spectroscopy and band structure calculations
- Anionic depolymerization transition in IrTe2
- Orbital Degeneracy and Peierls Instability in Triangular Lattice Superconductor IrPtTe
- Origin of the phase transition in IrTe2: structural modulation and local bonding instability
- Topological Solitons versus Non-Solitonic Phase Defects in Quasi-One-Dimensional Charge Density Wave
- Atomic structure, energetics, and dynamics of topological solitons in Indium chains on Si(111) surfaces
Cited by in corpus (22)
- Observation of a uniaxial strain-induced phase transition in the 2D topological semimetal IrTe
- Superconductivity emerging from a stripe charge order in IrTe2 nanoflakes
- Hierarchical stripe phases in IrTe2 driven by competition between Ir dimerization and Te bonding
- Large-gap insulating dimer ground state in monolayer IrTe2
- Dimerization-Induced Fermi-Surface Reconstruction in IrTe2
- Surface phases of the transition-metal dichalcogenide IrTe2
- Bond-Order and the Role of Ligand States in Stripe-Modulated IrTe2
- Nanoscale Superconducting Honeycomb Charge Order in IrTe2
- Robustness of the charge-ordered phases in IrTe against photoexcitation
- Fully Gapped s-wave-like Superconducting State and Electronic Structures in the Ir0.95Pd0.05Te2 Single Crystals with Strong Spin-orbital Coupling
- Examining the surface phase diagram of IrTe with photoemission
- Structural phase transition and electronic structure evolution in Ir1-xPtxTe2 studied by scanning tunneling microscopy
- Commensurate vs incommensurate charge ordering near the superconducting dome in IrPtTe revealed by resonant x-ray scattering
- Structural versus electronic distortions of symmetry-broken IrTe
- Direct observation of discommensurate charge density wave modulation in the quasi-1D Weyl semimetal candidate NbTe
- Spatially-resolved electronic structure of stripe domains in IrTe through electronic structure microscopy
- Dimensional crossover of charge order in IrTe with strong interlayer coupling
- Spin-lattice and electron-phonon coupling in 3/5 hybrid SrNiIrO
- Fermi surface of IrTe2 in the valence-bond state as determined by quantum oscillations
- SR and magnetometry study of superconducting 5% Pt doped IrTe
- Insensitivity of the striped charge-orders in IrTe to alkali surface doping implies their structural origin
- Break of symmetry at the surface of IrTe upon phase transition measured by X-ray photoelectron diffraction