Manipulation of spin and valley degrees of freedom is a key step towards realizing novel quantum technologies, for which atomically thin transition metal dichalcogenides (TMDCs) have been established as promising candidates. In monolayer TMDCs, the lack of inversion symmetry gives rise to a spin-valley correlation of the band structure allowing for valley-selective electronic excitation with circularly polarized light. Here we show that, even in centrosymmetric samples of 2H-WSe<sub>2</sub>, circularly polarized light can generate spin-, valley- and layer-polarized excited states in the conduction band. Employing time- and angle-resolved photoemission spectroscopy (trARPES) with spin-selective excitation, the dynamics of valley and layer ps...
Abstract Transition metal dichalcogenides (TMDs) have attracted much attention in the fields of vall...
Methods to generate spin-polarized electronic states in non-magnetic solids are strongly desired to ...
Valleytronics targets the exploitation of the additional degrees of freedom in materials where the e...
Manipulation of spin and valley degrees of freedom is a key step towards realizing novel quantum tec...
Manipulation of spin and valley degrees of freedom is a key step towards realizing novel quantum tec...
Manipulation of spin and valley degrees of freedom is a key step towards realizing novel quantum tec...
We report the spin-selective optical excitation of carriers in inversion-symmetric bulk samples of t...
We report the spin-selective optical excitation of carriers in inversion-symmetric bulk samples of t...
We report the spin-selective optical excitation of carriers in inversion-symmetric bulk samples of t...
Atomically thin layers of group VI transition metal dichalcogenides (TMDCs) have been recognized as ...
Optical excitation could generate electrons’ spin polarization in some semiconductors with the contr...
The valley degree of freedom in layered transition-metal dichalcogenides provides an opportunity to ...
The valley degree of freedom of electrons is attracting growing interest as a carrier of information...
The valley degree of freedom of electrons is attracting growing interest as a carrier of information...
Transition metal dichalcogenides have been the primary materials of interest in the field of valleyt...
Abstract Transition metal dichalcogenides (TMDs) have attracted much attention in the fields of vall...
Methods to generate spin-polarized electronic states in non-magnetic solids are strongly desired to ...
Valleytronics targets the exploitation of the additional degrees of freedom in materials where the e...
Manipulation of spin and valley degrees of freedom is a key step towards realizing novel quantum tec...
Manipulation of spin and valley degrees of freedom is a key step towards realizing novel quantum tec...
Manipulation of spin and valley degrees of freedom is a key step towards realizing novel quantum tec...
We report the spin-selective optical excitation of carriers in inversion-symmetric bulk samples of t...
We report the spin-selective optical excitation of carriers in inversion-symmetric bulk samples of t...
We report the spin-selective optical excitation of carriers in inversion-symmetric bulk samples of t...
Atomically thin layers of group VI transition metal dichalcogenides (TMDCs) have been recognized as ...
Optical excitation could generate electrons’ spin polarization in some semiconductors with the contr...
The valley degree of freedom in layered transition-metal dichalcogenides provides an opportunity to ...
The valley degree of freedom of electrons is attracting growing interest as a carrier of information...
The valley degree of freedom of electrons is attracting growing interest as a carrier of information...
Transition metal dichalcogenides have been the primary materials of interest in the field of valleyt...
Abstract Transition metal dichalcogenides (TMDs) have attracted much attention in the fields of vall...
Methods to generate spin-polarized electronic states in non-magnetic solids are strongly desired to ...
Valleytronics targets the exploitation of the additional degrees of freedom in materials where the e...