Nonlinear optical absorption and photocurrents in topological insulators
arXiv:2110.15236 · doi:10.1103/PhysRevB.105.115306
Abstract
Theory of optical absorption of linearly and circularly polarized light in surface and edge states in topological insulators is developed for a nonlinear in light intensity regime. The absorbance for surface states and the absorption width for the edge states both decease as at high light intensity . Elastic scattering of the photoexcited electrons and holes is taken into account. The absorption bleaching at high intensity is shown to be strongly suppressed by the elastic scattering. The linear-circular dichroism of one- and two-photon absorption in surface states, emerging in the nonlinear in intensity regime, decreases due to the elastic scattering of photocarriers. Absorption in the edge states of two-dimensional topological insulators also depends on the elastic scattering rate being suppressed when it is stronger that the energy relaxation rate. The linear dichroism - a dependence of the absorption length on the polarization plane orientation - is studied at arbitrary light intensities. We show that a degree of the linear dichroism is governed by the ratio of the elastic and inelastic relaxation times. The photocurrents generated in the edge states by both linearly and circularly polarized light change their intensity dependencies from the linear one at low to the at high intensities. The variation of the photocurrents with both polarization and intensity are strongly dependent on the elastic scattering rate. The considered effects can be observed in THz frequency range at laser intensities used in modern experiments.
11 pages, 7 figures
References in corpus (12)
- Velocity Renormalization and Carrier Lifetime in Graphene from Electron-Phonon Interaction
- Photo-excited Carrier Dynamics and Impact Excitation Cascade in Graphene
- Current injection by coherent one- and two-photon excitation in graphene and its bilayer
- Rabi Regime of Current Rectification in Solids
- Mesoscopic transport in two-dimensional topological insulators
- High-frequency nonlinear transport and photogalvanic effects in two-dimensional topological insulators
- Highly superlinear photogalvanic effects in (BiSb)(TeSe): Probing 3D topological insulator surface states at room temperature
- Nonlinear intensity dependence of terahertz edge photocurrents in graphene
- Nonlinear circular valley photogalvanic effect
- Nonlinear, anisotropic and giant photoconductivity in intrinsic and doped graphene
- Conductance suppression by nonmagnetic point defects in helical edge channels of two-dimensional topological insulators
- Suppression of ballistic helical transport by isotropic dynamical magnetic impurities
Cited by in corpus (4)
- Quantum Kinetic Theory of Nonlinear Optical Currents: Finite Fermi surface and Fermi sea contributions
- Linear photogalvanic effect in surface states of topological insulators
- Raman Photogalvanic Effect: photocurrent at inelastic light scattering
- Bleaching of the Terahertz Magneto-Photogalvanic Effect in CdHgTe Crystals with Kane Fermions