collaborators

11 papers

cond-mat.mtrl-sci2026

Ultrafast dynamics of excitons in black phosphorus

Geoffroy Kremer, Juan F. P. Mosquera, Joël Morf +9

Excitons are key quasiparticles determining the optical properties of solids. As such, they can be utilized to coherently control the electronic structure of materials using optica…

cond-mat.mtrl-sci2026

Enhanced Valley Polarization via Nonlinear Cascaded Quantum-Geometric Selection Rules

Quentin Courtade, Sotirios Fragkos, Dominique Descamps +4

The quantum geometric properties of Bloch electrons fundamentally govern light-matter interactions and optical selection rules in solids. In semiconducting transition-metal dichalc…

cond-mat.str-el2026

NESSi 2.0: The Non-Equilibrium Systems Simulation package version 2.0

Fabian Künzel, Michael Schüler, Denis Golež +7

Nonequilibrium Green's functions provide a powerful framework for studying quantum many-body dynamics including the laser-induced dynamics in solids. The Non-Equilibrium Systems Si…

cond-mat.str-el2026

Coherent spin waves in a maximal entropy phase

Arnau Romaguera, Eugenio Paris, Elizabeth Skoropata +24

In solids, disorder is conventionally regarded as detrimental to coherence. It typically localizes and dampens collective excitations, as exemplified by Anderson localization or th…

cond-mat.mtrl-sci2026

Direct observation of strain and confinement shaping the hole subbands of Ge quantum wells

Enrico Della Valle, Arianna Nigro, Miki Bonacci +6

Germanium-silicon-germanium (Ge/SiGe) heterostructures have emerged as a promising platform for hole-spin quantum technologies and high-mobility electronics, where st…

cond-mat.mtrl-sci2026

Accurate and efficient simulation of photoemission spectroscopy via Kohn-Sham scattering states

Gian Parusa, Sotirios Fragkos, Samuel Beaulieu +1

We introduce an efficient first-principles framework for simulating angle-resolved photoemission spectroscopy (ARPES) based on the direct computation of photoelectron states as sol…