Uncovering the nature of transient and metastable non-equilibrium phases in 1-TaS
arXiv:2301.05895 · doi:10.1103/PhysRevB.108.035157
Abstract
Complex systems are characterized by strong coupling between different microscopic degrees of freedom. Photoexcitation of such materials can drive them into new transient and long-lived hidden phases that may not have any counterparts in equilibrium. By exploiting femtosecond time- and angle-resolved photoemission spectroscopy, we probe the photoinduced transient phase and the recovery dynamics of the ground state in a complex material: the charge density wave (CDW)-Mott insulator 1-TaS. We reveal striking similarities between the band structures of the transient phase and the (equilibrium) structurally undistorted metallic phase, with evidence for the coexistence of the low-temperature Mott insulating phase and high-temperature metallic phase. Following the transient phase, we find that the restoration of the Mott and CDW order begins around the same time. This highlights that the Mott transition is tied to the CDW structural distortion, although earlier studies have shown that the collapse of Mott and CDW phases are decoupled from each other. Interestingly, as the suppressed order starts to recover, a long-lived metastable phase emerges before the material recovers to the ground state. Our results demonstrate that it is the CDW lattice order that drives the material into this metastable phase, which is indeed a commensurate CDW-Mott insulating phase but with a smaller CDW amplitude. Moreover, we find that the long-lived state emerges only under strong photoexcitation and has no evidence when the photoexcitation strength is weak.
References in corpus (8)
- Evidence for an excitonic insulator phase in 1T-TiSe
- X-ray diffraction observation of charge density wave order at zero magnetic field in ortho-II YBaCuO
- Tracking Cooper Pairs in a Cuprate Superconductor by Ultrafast Angle-Resolved Photoemission
- Band insulator to Mott insulator transition in 1T-TaS
- Dynamics of photoinduced Charge Density Wave-metal phase transition in K0.3MoO3
- Ultrafast electron calorimetry uncovers a new long-lived metastable state in 1T-TaSe mediated by mode-selective electron-phonon coupling
- A time-domain phase diagram of metastable states in a charge ordered quantum material
- Snapshots of a light-induced metastable hidden phase driven by the collapse of charge order