1 citations · 1 across the 3 of their papers we have counts for
4 papers
Hamiltonian learning reveals optoelectronic mechanisms across thermodynamic state space in soft semiconductors
Frederik Vonhoff, Jesper R. Pedersen, Frederico P. Delgado +5
Predicting optoelectronic response across thermodynamic state space requires coupling finite-temperature nuclear dynamics to electronic structure at scales where direct first-princ…
Physics-informed Hamiltonian learning for large-scale optoelectronic property prediction
Martin Schwade, Shaoming Zhang, Frederik Vonhoff +2
Predicting optoelectronic properties of large-scale atomistic systems under realistic conditions is crucial for rational materials design, yet computationally prohibitive with firs…
Analysis of real-space transport channels for electrons and holes in halide perovskites
Frederik Vonhoff, Maximilian J. Schilcher, David R. Reichman +1
Predicting and explaining charge carrier transport in halide perovskites is a formidable challenge because of the unusual vibrational and electron-phonon coupling properties of the…
Microscopic origin of the effective spin-spin interaction in a semiconductor quantum dot ensemble
Frederik Vonhoff, Andreas Fischer, Kira Deltenre +1
We present a microscopic model for a singly charged quantum dot (QD) ensemble to reveal the origin of the long-range effective interaction between the electron spins in the QDs. Wi…