A Tale of Scales: Dynamics of Complex Materials
Licentiatavhandling, 2025
This thesis contains contributions to the study of dynamics of complex materials at different length and time scales and is based on three papers. The first paper revolves around atomic-scale investigations and accompanies a software package developed for computing correlation functions from molecular dynamics trajectories, which have a strong tie to experimental observables. The second paper studies nuclear quantum effects on thermal properties through large-scale simulations. The third paper is a case study of applying a multi-scale modeling approach to investigate surfactant-surface phase behavior, which dictates the functionality in many applications. This behavior is challenging to model due to the combination of inorganic surfaces, liquid solvent, and supramolecular assemblies of organic molecules. Thus, a multi-scale modeling approach is required, which spans the atomic and continuum level. In this case, comparison to experiment is enabled via the computation of the optical response.
correlation functions
nuclear quantum effects
molecular dynamics
computational modeling
optical response
multi-scale dynamics
Författare
Esmée Berger
Chalmers, Fysik, Kondenserad materie- och materialteori
Highly efficient path-integral molecular dynamics simulations with GPUMD using neuroevolution potentials: Case studies on thermal properties of materials
Journal of Chemical Physics,;Vol. 162(2025)
Artikel i vetenskaplig tidskrift
Esmée Berger, Narjes Khosravian, Ferry A. A. Nugroho, Joakim Löfgren, Christoph Langhammer, Paul Erhart. In-situ Plasmonic Sensing of Surfactant Structures
Sveriges Neutronforskarskola - SwedNESS
Stiftelsen för Strategisk forskning (SSF) (GSn15-0008), 2016-07-01 -- 2021-06-30.
Stiftelsen för Strategisk forskning (SSF) (GSn15-0008), 2017-01-01 -- 2020-12-31.
FEELMOST – Free Energy Engineering for Liquid Molecular Solar Thermal Storage
Wallenberg Initiative Materials Science for Sustainability, 2024-09-01 -- .
Fasbeteende och elektroniska egenskaper hos halogenid-perovskiter från simulering på atomskala
Vetenskapsrådet (VR) (2020-04935), 2020-12-01 -- 2024-11-30.
Karbider som vätefällor i stål
Vetenskapsrådet (VR) (2021-05072), 2021-12-01 -- 2025-11-30.
Styrkeområden
Nanovetenskap och nanoteknik
Materialvetenskap
Ämneskategorier (SSIF 2025)
Den kondenserade materiens fysik
Fundament
Grundläggande vetenskaper
Infrastruktur
Chalmers e-Commons (inkl. C3SE, 2020-)
Utgivare
Chalmers
PJ-Salen, Fysikgården 2, Göteborg
Opponent: Dr. Jochen Rohrer, TU Darmstadt, Germany