Topologically protected surface states present rich physics and promising spintronic, optoelectronic, and photonic applications that require a proper understanding of their ultrafast carrier dynamics. Here, we investigate these dynamics in topological insulators (TIs) of the bismuth and antimony chalcogenide family, where we isolate the response of Dirac fermions at the surface from the response of bulk carriers by combining photoexcitation with below-bandgap terahertz (THz) photons and TI samples with varying Fermi level, including one sample with the Fermi level located within the bandgap. We identify distinctly faster relaxation of charge carriers in the topologically protected Dirac surface states (few hundred femtoseconds), compared to...
Three-dimensional topological insulators are fascinating materials with insulating bulk yet metallic...
Electrons with a linear energy/momentum dispersion are called massless Dirac electrons and represent...
We report on the systematic study of infrared/terahertz spectra of photocurrents in (Bi, Sb) Te base...
Topologically protected surface states present rich physics and promising spintronic, optoelectronic...
In this Letter, terahertz high harmonic generation processes in topological insulators of the bismut...
Resolving the complex interplay between surface and bulk response is a long-standing issue in the to...
Harnessing the carrier wave of light as an alternating-current bias may enable electronics at optica...
The demand for disorder-tolerant quantum logic and spin electronics can be met by generating and con...
Using time , spin , and angle resolved photoemission, we investigate the ultrafast spin dynamics of ...
We perform time- and angle-resolved photoemission spectroscopy of a prototypical topological insulat...
International audienceWe discuss the ultrafast evolution of the surface electronic structure of the ...
Collective excitation of Dirac plasmons in graphene and topological insulators has opened new possib...
Topological insulators (TIs) represent a novel quantum state of matter, characterized by edge or sur...
Topology-protected surface transport of ultimate thinness in three-dimensional topological insulator...
Three-dimensional topological insulators are fascinating materials with insulating bulk yet metallic...
Electrons with a linear energy/momentum dispersion are called massless Dirac electrons and represent...
We report on the systematic study of infrared/terahertz spectra of photocurrents in (Bi, Sb) Te base...
Topologically protected surface states present rich physics and promising spintronic, optoelectronic...
In this Letter, terahertz high harmonic generation processes in topological insulators of the bismut...
Resolving the complex interplay between surface and bulk response is a long-standing issue in the to...
Harnessing the carrier wave of light as an alternating-current bias may enable electronics at optica...
The demand for disorder-tolerant quantum logic and spin electronics can be met by generating and con...
Using time , spin , and angle resolved photoemission, we investigate the ultrafast spin dynamics of ...
We perform time- and angle-resolved photoemission spectroscopy of a prototypical topological insulat...
International audienceWe discuss the ultrafast evolution of the surface electronic structure of the ...
Collective excitation of Dirac plasmons in graphene and topological insulators has opened new possib...
Topological insulators (TIs) represent a novel quantum state of matter, characterized by edge or sur...
Topology-protected surface transport of ultimate thinness in three-dimensional topological insulator...
Three-dimensional topological insulators are fascinating materials with insulating bulk yet metallic...
Electrons with a linear energy/momentum dispersion are called massless Dirac electrons and represent...
We report on the systematic study of infrared/terahertz spectra of photocurrents in (Bi, Sb) Te base...