most citedNEP89: Universal neuroevolution potential for inorganic and organic materials across 89 elements

19 citations · 19 across the 1 of their papers we have counts for

collaborators

6 papers

cond-mat.mtrl-sci202619 cited

NEP89: Universal neuroevolution potential for inorganic and organic materials across 89 elements

Ting Liang, Ke Xu, Eric Lindgren +16

While machine-learned interatomic potentials offer near-quantum-mechanical accuracy for atomistic simulations, many are material-specific or computationally intensive, limiting the…

cond-mat.mtrl-sci2026

Revealing the kinetics of interfacial surfactant phase transitions through multiscale simulations and in-situ plasmonic sensing

Esmée Berger, Narjes Khosravian, Ferry Anggoro Ardy Nugroho +3

Surfactant self-assembly at solid-liquid interfaces governs interfacial stability, transport, and reactivity across many technologies, yet resolving interfacial surfactant phases a…

physics.comp-ph2026

qNEP: A highly efficient neuroevolution potential with dynamic charges for large-scale atomistic simulations

Zheyong Fan, Benrui Tang, Esmée Berger +13

Although electrostatics can be incorporated into machine-learned interatomic potentials, existing approaches are computationally very demanding, limiting large-scale, long-time sim…

cond-mat.mtrl-sci2025

Thermal Stabilization of Defect Charge States and Finite-Temperature Charge Transition Levels

Tobias Hainer, Ethan Berger, Esmée Berger +3

Point defects introduce localized electronic states that critically affect carrier trapping, recombination, and transport in functional materials. The associated charge transition…

cond-mat.mtrl-sci2025

Predicting neutron experiments from first principles: A workflow powered by machine learning

Eric Lindgren, Adam J. Jackson, Erik Fransson +6

Machine learning has emerged as a powerful tool in materials discovery, enabling the rapid design of novel materials with tailored properties for countless applications, including…

cond-mat.mtrl-sci2025

Dynasor 2: From Simulation to Experiment Through Correlation Functions

Esmée Berger, Erik Fransson, Fredrik Eriksson +4

Correlation functions, such as static and dynamic structure factors, offer a versatile approach to analyzing atomic-scale structure and dynamics. By having access to the full dynam…