Optical response of highly excited particles in a strongly correlated system
arXiv:1312.1962 · doi:10.1103/PhysRevB.89.125123
Abstract
We present a linear-response formalism for a system of correlated electrons out of equilibrium, as relevant for the probe optical absorption in pump-probe experiments. We consider the time dependent optical conductivity and its nonequilibrium properties. As an application we numerically study a single highly excited charged particle in the spin background, as described within the two-dimensional - model. Our results show that the optical sum rule approaches the equilibrium-like one very fast, however, the time evolution and the final asymptotic behavior of the absorption spectra in the finite systems considered still reveal dependence on the type of initial pump perturbation. This is observed in the evolution of its main features: the mid-infrared peak and the Drude weight.
6 pages, 4 figures
References in corpus (10)
- Thermalization and its mechanism for generic isolated quantum systems
- Strongly correlated fermions after a quantum quench
- Theoretical description of time-resolved photoemission spectroscopy: application to pump-probe experiments
- Disentangling the electronic and phononic glue in a high-Tc superconductor
- Nonequilibrium Steady State of Photoexcited Correlated Electrons in the Presence of Dissipation
- Photo-induced states in a Mott insulator
- Theory of time-resolved optical spectroscopy on correlated electron systems
- Nonequilibrium quantum dynamics of a charge carrier doped into a Mott insulator
- Numerical approach to low-doping regime of the t-J model
- Hubbard exciton revealed by time-domain optical spectroscopy
Cited by in corpus (42)
- Ultrafast optical spectroscopy of strongly correlated materials and high-temperature superconductors: a non-equilibrium approach
- Parton theory of magnetic polarons: Mesonic resonances and signatures in dynamics
- Numerical method to compute optical conductivity based on pump-probe simulations
- Theory of coherent oscillations detection in THz pump-probe spectroscopy: from phonons to electronic collective modes
- Theory for Time-Resolved Resonant Inelastic X-ray Scattering
- Nonequilibrium GW+EDMFT: Antiscreening and inverted populations from nonlocal correlations
- Evaluation of time-dependent correlators after a local quench in iPEPS: hole motion in the t-J model
- Detecting superconductivity out-of-equilibrium
- Dynamical formation of a magnetic polaron in a two-dimensional quantum antiferromagnet
- Photoinduced in-gap excitations in the one-dimensional extended Hubbard model
- Possible light-induced superconductivity in a strongly correlated electron system
- Non-equilibrium Optical Conductivity: General Theory and Application to Transient Phases
- Coupled charge and spin dynamics in a photo-excited Mott insulator
- Nonequilibrium dynamics in the pump-probe spectroscopy of excitonic insulators
- Photo-induced nonequilibrium states in Mott insulators
- Unusual Two-stage Dynamics of the Spin-Lattice Polaron Formation
- Fluctuating Nature of Light-Enhanced -Wave Superconductivity: A Time-Dependent Variational Non-Gaussian Exact Diagonalization Study
- Photoinduced absorptions inside the Mott gap in the two-dimensional extended Hubbard model
- Holography and thermalization in optical pump-probe spectroscopy
- Optical response of laser-driven charge-transfer complex described by Holstein-Hubbard model coupled to heat baths: Hierarchical equations of motion approach
- Pulse excitation to continuous-wave excitation in a low-dimensional interacting quantum system
- Photoinduced correlated electron dynamics in a two-leg ladder Hubbard system
- Thermalization after photoexcitation from the perspective of optical spectroscopy
- Photoinduced electron-electron pairing in the extended Falicov-Kimball model
- Nonequilibrium optical response of a one-dimensional Mott insulator
- Nonequilibrium susceptibility in photoinduced Floquet states
- Photoinduced enhancement of bond-order in the one-dimensional extended Hubbard model
- Time-dependent spectral properties of photoexcited one-dimensional ionic Hubbard model: an exact diagonalization study
- Spreading of correlations in the Falicov-Kimball model
- Photoinduced charge carrier dynamics in Hubbard two-leg ladders and chains
- Analysis of time-resolved single-particle spectrum on the one-dimensional extended Hubbard model
- Charge and pairing dynamics in the attractive Hubbard model: mode coupling and the validity of linear-response theory
- Chirped amplitude mode in photo-excited superconductors
- Pump-probe spectroscopy of the one-dimensional extended Hubbard model at half filling
- Extracting Nonlinear Dynamical Response Functions from Time Evolution
- Keldysh crossover in one-dimensional Mott insulators
- Holographic pump probe spectroscopy
- The perils of minimal coupling to electromagnetic field in quantum many-body systems
- Optical absorption activated by an ultrashort half-cycle pulse in metallic and superconducting states of the Hubbard model
- Distinct charge and spin recovery dynamics in a photo-excited Mott insulator
- Tangent equations of motion for nonlinear response functions
- Charge carrier relaxation dynamics in the one-dimensional Kondo lattice model