most citedNonadiabatic Dynamics of Molecules Interacting with Metal Surfaces: A Quantum-Classical Approach Based on Langevin Dynamics and the Hierarchical Equations of Motion

1 citations · 1 across the 4 of their papers we have counts for

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4 papers

physics.chem-ph2025

Unraveling Exciton Trap Dynamics and Nonradiative Loss Pathways in Quantum Dots via Atomistic Simulations

Bokang Hou, Salvatore Gatto, Samuel L. Rudge +3

Surface defects in colloidal quantum dots are a major source of nonradiative losses, yet the microscopic mechanisms underlying exciton trapping and recombination remain elusive. He…

physics.chem-ph2024

Nonadiabatic Quantum Dynamics of Molecules Scattering from Metal Surfaces

Riley J. Preston, Yaling Ke, Samuel L. Rudge +4

Nonadiabatic coupling between electrons and molecular motion at metal surfaces leads to energy dissipation and dynamical steering effects during chemical surface dynamics. We prese…

physics.chem-ph2024

Nonadiabatic Dynamics of Molecules Interacting with Metal Surfaces: Extending the Hierarchical Equations of Motion and Langevin Dynamics Approach to Position-Dependent Metal-Molecule Couplings

Martin Mäck, Samuel L. Rudge, Michael Thoss

Electronic friction and Langevin dynamics is a popular mixed quantum-classical method for simulating the nonadiabatic dynamics of molecules interacting with metal surfaces, as it c…

cond-mat.mes-hall20241 cited

Nonadiabatic Dynamics of Molecules Interacting with Metal Surfaces: A Quantum-Classical Approach Based on Langevin Dynamics and the Hierarchical Equations of Motion

Samuel L. Rudge, Christoph Kaspar, Robin L. Grether +3

A novel mixed quantum-classical approach to simulating nonadiabatic dynamics of molecules at metal surfaces is presented. The method combines the numerically exact hierarchical equ…