Semiconducting transition metal dichalcogenides present a complex electronic band structure with a rich orbital contribution to their valence and conduction bands. The possibility to consider the electronic states from a tight-binding model is highly useful for the calculation of many physical properties, for which first principle calculations are more demanding in computational terms when having a large number of atoms. Here, we present a set of Slater–Koster parameters for a tight-binding model that accurately reproduce the structure and the orbital character of the valence and conduction bands of single layer MX 2 , where M = Mo, W and X = S, Se. The fit of the analytical tight-binding Hamiltonian is done based on ...
International audienceWe developed a six-band k · p model that describes the electronic states of mo...
Semiconducting transition metal dichalcogenides (TMDs) represent a class of layered materials with n...
Semiconducting transition metal dichalcogenides (TMDs) represent a class of layered materials with n...
Semiconducting transition metal dichalcogenides present a complex electronic band structure with a r...
We propose an accurate tight-binding parametrization for the band structure of MoS2 monolayers near ...
We report first principles calculations of the electronic structure of monolayer 1H-MX2 (M = Mo, W; ...
We present an accurate ab initio tight-binding Hamiltonian for the transition metal dichalcogenides,...
Monolayer transition metal dichalcogenide (TMD) alloys, such as Mo1 − xWxS2, owing to the unique ele...
International audienceWe developed a six-band k · p model that describes the electronic states of mo...
Based on first principles Density Functional Theory calculations, we have investigated for possible ...
International audienceBy means of first-principles GW calculations, we have studied the electronic s...
We present here the minimal tight--binding model for a single layer of transition metal dichalcogeni...
International audienceWe developed a six-band k · p model that describes the electronic states of mo...
International audienceWe developed a six-band k · p model that describes the electronic states of mo...
International audienceWe developed a six-band k · p model that describes the electronic states of mo...
International audienceWe developed a six-band k · p model that describes the electronic states of mo...
Semiconducting transition metal dichalcogenides (TMDs) represent a class of layered materials with n...
Semiconducting transition metal dichalcogenides (TMDs) represent a class of layered materials with n...
Semiconducting transition metal dichalcogenides present a complex electronic band structure with a r...
We propose an accurate tight-binding parametrization for the band structure of MoS2 monolayers near ...
We report first principles calculations of the electronic structure of monolayer 1H-MX2 (M = Mo, W; ...
We present an accurate ab initio tight-binding Hamiltonian for the transition metal dichalcogenides,...
Monolayer transition metal dichalcogenide (TMD) alloys, such as Mo1 − xWxS2, owing to the unique ele...
International audienceWe developed a six-band k · p model that describes the electronic states of mo...
Based on first principles Density Functional Theory calculations, we have investigated for possible ...
International audienceBy means of first-principles GW calculations, we have studied the electronic s...
We present here the minimal tight--binding model for a single layer of transition metal dichalcogeni...
International audienceWe developed a six-band k · p model that describes the electronic states of mo...
International audienceWe developed a six-band k · p model that describes the electronic states of mo...
International audienceWe developed a six-band k · p model that describes the electronic states of mo...
International audienceWe developed a six-band k · p model that describes the electronic states of mo...
Semiconducting transition metal dichalcogenides (TMDs) represent a class of layered materials with n...
Semiconducting transition metal dichalcogenides (TMDs) represent a class of layered materials with n...