Ultrafast dynamics of photocurrents in surface states of 3D topological insulators
arXiv:2010.14482 · doi:10.1002/pssb.202000521
Abstract
This article reviews experimental work on the ultrafast electron dynamics in the topological surface state (TSS) of three-dimensional (3D) topological insulators (TIs) observed with time- and angle-resolved two-photon photoemission (2PPE). The focus is laid on the generation of ultrafast photocurrents and the time-resolved observation of their decay. 2PPE not only allow to unambiguously relate the photocurrents to the spin-polarized electronic surface states. Probing of the asymmetric momentum distribution of the electrons carrying the current makes it possible to study the microscopic scattering processes that governs the unusual electron transport in the time domain. Ultrashort mid-infrared pump pulses permit not only a direct optical excitation of the TSS in SbTe but also lead to a strong asymmetry of the TSS population in momentum space. Two-dimensional band mapping of the TSS shows that this asymmetry is in fact representative for a macroscopic photocurrent while the helicity-dependence of the photocurrent is found to be small. The time-resolved observation of the photocurrent decay reveals a huge mean free path of the electrons in the TSS.
15 pages, 11 figures
References in corpus (13)
- Discovery (theoretical prediction and experimental observation) of a large-gap topological-insulator class with spin-polarized single-Dirac-cone on the surface
- A topological Dirac insulator in a quantum spin Hall phase : Experimental observation of first strong topological insulator
- Topological Surface States Protected From Backscattering by Chiral Spin Texture
- Ultrafast Optical Excitation of a Persistent Surface-State Population in the Topological Insulator Bi2Se3
- Ultrafast surface carrier dynamics in the topological insulator Bi2Te3
- Ultrafast helicity control of surface currents in topological insulators with near-unity fidelity
- Ultrafast photodoping and effective Fermi-Dirac distribution of the Dirac particles in Bi2Se3
- Spin-Polarized Surface Resonances Accompanying Topological Surface State Formation
- Sub-picosecond spin dynamics of excited states in the topological insulator BiTe
- Coherent control of injection currents in high-quality films of Bi2Se3
- Ultrafast Energy- and Momentum-resolved Surface Dirac Photocurrents in the Topological Insulator SbTe
- Resonance-type thickness dependence of optical second harmonic generation in thin-films of the topological insulator Bi2Se3
- An isolated Dirac cone on the surface of ternary tetradymite-like topological insulators
Cited by in corpus (4)
- Nonthermal pathways to ultrafast control in quantum materials
- Multiphoton-pumped UV-Vis transient absorption spectroscopy of 2D materials: basic concepts and recent applications
- Ultrafast transient absorption spectroscopy of 2D semiconductors: a review
- Two-photon IR pumped UV-Vis transient absorption spectroscopy of Dirac fermions in the 2D and 3D topological insulator Bi2Se3