We present an accurate ab initio tight-binding Hamiltonian for the transition metal dichalcogenides, MoS2, MoSe2, WS2, WSe2, with a minimal basis (the d orbitals for the metal atoms and p orbitals for the chalcogen atoms) based on a transformation of the Kohn-Sham density functional theory Hamiltonian to a basis of maximally localized Wannier functions. The truncated tight-binding Hamiltonian, with only on-site, first, and partial second neighbor interactions, including spin-orbit coupling, provides a simple physical picture and the symmetry of the main band-structure features. Interlayer interactions between adjacent layers are modeled by transferable hopping terms between the chalcogen p orbitals. The full-range tight-binding Hamiltonian ...
We present k.p Hamiltonians parametrized by ab initio density functional theory calculations to desc...
One of the main characteristics of the new family of two-dimensional crystals of semiconducting tran...
<p>By means of first-principles density functional calculations, we study the maximally localised Wa...
Semiconducting transition metal dichalcogenides present a complex electronic band structure with a r...
Semiconducting transition metal dichalcogenides present a complex electronic band structure with a r...
In this thesis a framework for quantum transport simulation from first principles is introduced, foc...
We present here the minimal tight--binding model for a single layer of transition metal dichalcogeni...
We propose an accurate tight-binding parametrization for the band structure of MoS2 monolayers near ...
We present k⋅p Hamiltonians parametrized by ab initio density functional theory calculations to desc...
We present k⋅p Hamiltonians parametrized by ab initio density functional theory calculations to desc...
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...
International audienceWe developed a six-band k · p model that describes the electronic states of mo...
We present k.p Hamiltonians parametrized by ab initio density functional theory calculations to desc...
One of the main characteristics of the new family of two-dimensional crystals of semiconducting tran...
<p>By means of first-principles density functional calculations, we study the maximally localised Wa...
Semiconducting transition metal dichalcogenides present a complex electronic band structure with a r...
Semiconducting transition metal dichalcogenides present a complex electronic band structure with a r...
In this thesis a framework for quantum transport simulation from first principles is introduced, foc...
We present here the minimal tight--binding model for a single layer of transition metal dichalcogeni...
We propose an accurate tight-binding parametrization for the band structure of MoS2 monolayers near ...
We present k⋅p Hamiltonians parametrized by ab initio density functional theory calculations to desc...
We present k⋅p Hamiltonians parametrized by ab initio density functional theory calculations to desc...
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...
International audienceWe developed a six-band k · p model that describes the electronic states of mo...
We present k.p Hamiltonians parametrized by ab initio density functional theory calculations to desc...
One of the main characteristics of the new family of two-dimensional crystals of semiconducting tran...
<p>By means of first-principles density functional calculations, we study the maximally localised Wa...