High- and low-energy many-body effects of graphene in a unified approach | Matter42 Literature
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High- and low-energy many-body effects of graphene in a unified approach
Alberto Guandalini, Giovanni Caldarelli, Francesco Macheda, Francesco Mauri
arXiv preprint·2025·arXiv:2409.17645
Samples
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Freestanding periodic graphene monolayer modeled with a tight-binding Hamiltonian and many-body perturbation theory corrections for quasiparticle and dielectric response properties.
No measurements recorded
Simulated Supercell DftCStudied Material
Why these are connected
Related documents with shared materials, methods, properties, or citations.
High- and low-energy many-body effects of graphene in a unified approach
Alberto Guandalini, Giovanni Caldarelli, Francesco Macheda, Francesco Mauri
arXiv preprint·2025·arXiv:2409.17645
Samples
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Freestanding periodic graphene monolayer modeled with a tight-binding Hamiltonian and many-body perturbation theory corrections for quasiparticle and dielectric response properties.
No measurements recorded
Simulated Supercell DftCStudied Material
Why these are connected
Related documents with shared materials, methods, properties, or citations.
High- and low-energy many-body effects of graphene in a unified approach
Alberto Guandalini, Giovanni Caldarelli, Francesco Macheda, Francesco Mauri
arXiv preprint·2025·arXiv:2409.17645
Samples
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Freestanding periodic graphene monolayer modeled with a tight-binding Hamiltonian and many-body perturbation theory corrections for quasiparticle and dielectric response properties.
No measurements recorded
Simulated Supercell DftCStudied Material
Why these are connected
Related documents with shared materials, methods, properties, or citations.
High- and low-energy many-body effects of graphene in a unified approach
Alberto Guandalini, Giovanni Caldarelli, Francesco Macheda, Francesco Mauri
arXiv preprint·2025·arXiv:2409.17645
Samples
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Freestanding periodic graphene monolayer modeled with a tight-binding Hamiltonian and many-body perturbation theory corrections for quasiparticle and dielectric response properties.
No measurements recorded
Simulated Supercell DftCStudied Material
Why these are connected
Related documents with shared materials, methods, properties, or citations.