Local Real-Space View of the Achiral 1-TiSe 2 2 2 Charge Density Wave
arXiv:1710.09107 · doi:10.1103/PhysRevLett.120.136404
Abstract
The transition metal dichalcogenide 1-TiSe is a quasi-two-dimensional layered material undergoing a commensurate 2 2 2 charge density wave (CDW) transition with a weak periodic lattice distortion (PLD) below 200 K. Scanning tunneling microscopy (STM) combined with intentionally introduced interstitial Ti atoms allows to go beyond the usual spatial resolution of STM and to intimately probe the three-dimensional character of the PLD. Furthermore, the inversion-symmetric, achiral nature of the CDW in the -direction is revealed, contradicting the claimed existence of helical CDW stacking and associated chiral order. This study paves the way to a simultaneous real-space probing of both charge and structural reconstructions in CDW compounds.
5 pages, 4 figures