Nonequilibrium steady-state theory of photodoped Mott insulators
arXiv:2007.12511 · doi:10.1103/PhysRevB.103.045133
Abstract
Photodoped states are widely observed in laser-excited Mott insulators, in which charge excitations are quickly created and can exist beyond the duration of the external driving. Despite the fruitful experimental explorations, theoretical studies on the microscopic models face the challenge to simultaneously deal with exponentially separated time scales, especially in multi-band systems, where the long-time behaviors are often well beyond the reach of state-of-the-art numerical tools. Here, we address this difficulty by introducing a steady-state description of photodoped Mott insulators using an open-system setup, where the photodoped system is stabilized as a non-equilirium steady-state (NESS) by a weak external driving. Taking advantage of the stationarity, we implement and discuss the details of an efficient numerical tool using the steady-state Dynamical Mean-Field Theory (DMFT), combined with the non-crossing approximation (NCA). We demonstrate that these stationary photodoped states exhibit the same properties of their transient counterparts, while being solvable with reasonable computational efforts. Furthermore, they can be parametrized by just few physical quantities, including the effective temperature and the density of charge excitations, which confirms the universal nature of photodoped states indeed independent of the excitation protocols. As a first application, we consider the stationary photodoped states in a two-band Hubbard model with intertwined spin-and-orbital ordering and find a family of hidden phases unknown from the previous studies, implying an apparently unexplored time regime of the relaxation of the intertwined orders.
References in corpus (11)
- Nonequilibrium Dynamical Mean Field Theory: an auxiliary Quantum Master Equation approach
- On the mechanism for orbital-ordering in KCuF3
- Snapshots of the retarded interaction of charge carriers with ultrafast fluctuations in cuprates
- Quantum Monte-Carlo for correlated out-of-equilibrium nanoelectronics devices
- Nonthermal symmetry broken states in the strongly interacting Hubbard model
- Steady-state nonequilibrium density of states of driven strongly correlated lattice models in infinite dimensions
- Electric-field-driven resistive switching in dissipative Hubbard model
- Role of impact ionization in the thermalization of photo-excited Mott insulators
- Non-equilibrium gap-collapse near a first-order Mott transition
- Influence of spin and orbital fluctuations on Mott-Hubbard exciton dynamics in LaVO Thin Films
- Pump-probe Auger-electron spectroscopy of Mott insulators
Cited by in corpus (23)
- Exploring nonequilibrium phases of photo-doped Mott insulators with Generalized Gibbs ensembles
- Photo-induced nonequilibrium states in Mott insulators
- A quantum Boltzmann equation for strongly correlated electrons
- Spin, charge and -spin separation in one-dimensional photo-doped Mott insulators
- A photo-induced strange metal with electron and hole quasi-particles
- Accelerated gap collapse in a Slater antiferromagnet
- Strong coupling impurity solver based on quantics tensor cross interpolation
- Non-thermal superconductivity in photo-doped multi-orbital Hubbard systems
- Photo-induced Ferromagnetic and Superconducting Orders in Multi-orbital Hubbard Models
- Dynamical mean-field approach to disordered interacting systems and applications to quantum transport problem
- Twisted chiral superconductivity in photodoped frustrated Mott insulators
- Steady-state dynamical mean field theory based on influence functional matrix product states
- Photoinduced prethermalization phenomena in correlated metals
- Real-frequency TPSC+DMFT investigation of the square-lattice Hubbard model
- Light-induced hidden odd-frequency order in a model for AC
- Role of phonon coupling in driving photo-excited Mott insulators towards a transient superconducting steady state
- Light-wave coherent control of the insulator-to-metal transition in a strongly correlated material
- Photo-induced charge, spin, and orbital order in the two-orbital extended Hubbard model
- Third-order strong-coupling impurity solver for real-frequency DMFT: Accurate spectral functions for antiferromagnetic and photo-doped states
- Distinct charge and spin recovery dynamics in a photo-excited Mott insulator
- Interaction effects on electronic Floquet spectra: Excitonic effects
- Photoemission Signatures of Photoinduced Carriers and Excitons in One-Dimensional Mott Insulators
- Photoinduced excitonic magnetism in a multiorbital Hubbard system