A damping-like spin-orbit torque (SOT) is a prerequisite for ultralow-power spin logic devices. Here, we report on the damping-like SOT in just one monolayer of the conducting transition-metal dichalcogenide (TMD) TaS2 interfaced with a NiFe (Py) ferromagnetic layer. The charge-spin conversion efficiency is found to be 0.25 ± 0.03 in TaS2(0.88)/Py(7), and the spin Hall conductivity is found to be superior to values reported for other TMDs. We also observed sizable field-like torque in this heterostructure. The origin of this large damping-like SOT can be found in the interfacial properties of the TaS2/Py heterostructure, and the experimental findings are complemented by the results from density functional theory calculations. It is envisio...
Resumen del trabajo presentado al 1st Workshop Spain-Taiwan: "2D Materials and Interfaces for Spintr...
The transfer of knowledge from one generation to another is key to the intellectualness of mankind. ...
Using first-principles combined with quantum transport calculations, we predict that graphene sandwi...
A damping-like spin-orbit torque (SOT) is a prerequisite for ultralow-power spin logic devices. Here...
In recent years, there has been a growing interest in spin-orbit torques (SOTs) for manipulating the...
Finding efficient ways of manipulating magnetic bits is one of the core goals in spintronic research...
Transition metal dichalcogenides (TMDs) are promising materials for efficient generation of current-...
International audienceTopological insulators (TI) have gained much interest in the field of spintron...
Spintronic devices are based on heterojunctions of two materials with different magnetic and electro...
Finding efficient ways of manipulating magnetic bits is one of the core goals in spintronic research...
Spin torque can toggle magnetization state of nanomagnets in magnetic tunnel junctions. In heavy met...
(Bi1–xSbx)2Te3 topological insulators (TIs) are gathering increasing attention owing to their large ...
In the present information age, people across the globe generate an enormous digital footprint. Ther...
The spin polarization induced by the spin Hall effect (SHE) in thin films typically points out of th...
Transition metal dichalcogenides (TMDs) have drawn great attention owing to their potential for elec...
Resumen del trabajo presentado al 1st Workshop Spain-Taiwan: "2D Materials and Interfaces for Spintr...
The transfer of knowledge from one generation to another is key to the intellectualness of mankind. ...
Using first-principles combined with quantum transport calculations, we predict that graphene sandwi...
A damping-like spin-orbit torque (SOT) is a prerequisite for ultralow-power spin logic devices. Here...
In recent years, there has been a growing interest in spin-orbit torques (SOTs) for manipulating the...
Finding efficient ways of manipulating magnetic bits is one of the core goals in spintronic research...
Transition metal dichalcogenides (TMDs) are promising materials for efficient generation of current-...
International audienceTopological insulators (TI) have gained much interest in the field of spintron...
Spintronic devices are based on heterojunctions of two materials with different magnetic and electro...
Finding efficient ways of manipulating magnetic bits is one of the core goals in spintronic research...
Spin torque can toggle magnetization state of nanomagnets in magnetic tunnel junctions. In heavy met...
(Bi1–xSbx)2Te3 topological insulators (TIs) are gathering increasing attention owing to their large ...
In the present information age, people across the globe generate an enormous digital footprint. Ther...
The spin polarization induced by the spin Hall effect (SHE) in thin films typically points out of th...
Transition metal dichalcogenides (TMDs) have drawn great attention owing to their potential for elec...
Resumen del trabajo presentado al 1st Workshop Spain-Taiwan: "2D Materials and Interfaces for Spintr...
The transfer of knowledge from one generation to another is key to the intellectualness of mankind. ...
Using first-principles combined with quantum transport calculations, we predict that graphene sandwi...