Topology-protected surface transport of ultimate thinness in three-dimensional topological insulators (TIs) is breaking new ground in quantum science and technology. Yet a challenge remains on how to disentangle and selectively control surface helical spin transport from the bulk contribution. Here we use the mid-infrared and terahertz (THz) photoexcitation of exclusive intraband transitions to enable ultrafast manipulation of surface THz conductivity in Bi2Se3. The unique, transient electronic state is characterized by frequency-dependent carrier relaxations that directly distinguish the faster surface channel than the bulk with no complication from interband excitations or need for reduced bulk doping. We determine the topological enhance...
We use ultrafast laser pulses to experimentally demonstrate that the second-order optical response o...
Optical injection and detection of charge currents is an alternative to conventional transport and p...
Strong spin–orbit coupling, resulting in the formation of spin‐momentum‐locked surface states, endow...
Three-dimensional topological insulators are fascinating materials with insulating bulk yet metallic...
Topologically protected surface states present rich physics and promising spintronic, optoelectronic...
Electronic structure and electron dynamics in the ternary topological insulator Bi2Te2Se are studied...
Topological insulators possess completely different spin-orbit coupled bulk and surface electronic s...
The surface of a topological insulator harbors exotic topological states, protected against backscat...
International audienceThree-dimensional topological insulators are fascinating materials with insula...
Strong spin–momentum coupling in topological insulators gives rise to topological surface states, pr...
Using femtosecond time- and angle-resolved photoemission spectroscopy, we investigated the nonequili...
Resolving the complex interplay between surface and bulk response is a long-standing issue in the to...
The demand for disorder-tolerant quantum logic and spin electronics can be met by generating and con...
Strong spin-momentum coupling in topological insulators give rise to topological surface states, pro...
Strong spin-momentum coupling in topological insulators give rise to topological surface states, pro...
We use ultrafast laser pulses to experimentally demonstrate that the second-order optical response o...
Optical injection and detection of charge currents is an alternative to conventional transport and p...
Strong spin–orbit coupling, resulting in the formation of spin‐momentum‐locked surface states, endow...
Three-dimensional topological insulators are fascinating materials with insulating bulk yet metallic...
Topologically protected surface states present rich physics and promising spintronic, optoelectronic...
Electronic structure and electron dynamics in the ternary topological insulator Bi2Te2Se are studied...
Topological insulators possess completely different spin-orbit coupled bulk and surface electronic s...
The surface of a topological insulator harbors exotic topological states, protected against backscat...
International audienceThree-dimensional topological insulators are fascinating materials with insula...
Strong spin–momentum coupling in topological insulators gives rise to topological surface states, pr...
Using femtosecond time- and angle-resolved photoemission spectroscopy, we investigated the nonequili...
Resolving the complex interplay between surface and bulk response is a long-standing issue in the to...
The demand for disorder-tolerant quantum logic and spin electronics can be met by generating and con...
Strong spin-momentum coupling in topological insulators give rise to topological surface states, pro...
Strong spin-momentum coupling in topological insulators give rise to topological surface states, pro...
We use ultrafast laser pulses to experimentally demonstrate that the second-order optical response o...
Optical injection and detection of charge currents is an alternative to conventional transport and p...
Strong spin–orbit coupling, resulting in the formation of spin‐momentum‐locked surface states, endow...