The dynamics of a molecule in a magnetic field is significantly different from its zero-field counterpart. One important difference in the presence of a field is the Lorentz force acting on the nuclei, which can be decomposed as the sum of the bare nuclear Lorentz force and a screening force due to the electrons. This screening force is calculated from the Berry curvature and can change the dynamics qualitatively. It is therefore important to include the contributions from the Berry curvature in molecular dynamics simulations in a magnetic field. In this work, we present a scheme for calculating the Berry curvature numerically using a finite-difference technique, addressing challenges related to the arbitrary global phase of the wave functi...
The mechanisms of negative magnetoresistance in various topological materials have been the center o...
A topology file provides the physical parameters necessary for Molecular Dynamic (MD) simulations. A...
From the inception of nuclear magnetic resonance as a spectroscopic technique, the local origin of c...
The diagonal nonadiabatic term arising from the Born–Oppenheimer wave function ansatz contains contr...
The Berry connection and curvature are key components of electronic structure calculations for atoms...
In the mean-field theory of atom-molecule systems, where bosonic atoms combine to form molecules, th...
Under the Born-Oppenheimer approximation, the electronic ground state evolves adiabatically and can ...
Nonadiabatic dynamics play an important role within electron transfer processes, excitation energy t...
Recent progress in wave packet dynamics based on the insight of Berry pertaining to adiabatic evolut...
The Berry curvature (BC) - a quantity encoding the geometric properties of the electronic wavefuncti...
The electrostatic Lorentz force acting on the H and C nuclei of a benzenemolecule in the presence of...
We show that the Berry force as computed by an approximate, mean-field electronic structure can be m...
Thesis (Ph.D.)--University of Washington, 2020Simulating and understanding magnetic properties are e...
The orbital magnetic moment due to rotation or pseudorotation in a molecule or a solid and the corre...
We give an account of some recent advances in the development of ab initio methods for the calculati...
The mechanisms of negative magnetoresistance in various topological materials have been the center o...
A topology file provides the physical parameters necessary for Molecular Dynamic (MD) simulations. A...
From the inception of nuclear magnetic resonance as a spectroscopic technique, the local origin of c...
The diagonal nonadiabatic term arising from the Born–Oppenheimer wave function ansatz contains contr...
The Berry connection and curvature are key components of electronic structure calculations for atoms...
In the mean-field theory of atom-molecule systems, where bosonic atoms combine to form molecules, th...
Under the Born-Oppenheimer approximation, the electronic ground state evolves adiabatically and can ...
Nonadiabatic dynamics play an important role within electron transfer processes, excitation energy t...
Recent progress in wave packet dynamics based on the insight of Berry pertaining to adiabatic evolut...
The Berry curvature (BC) - a quantity encoding the geometric properties of the electronic wavefuncti...
The electrostatic Lorentz force acting on the H and C nuclei of a benzenemolecule in the presence of...
We show that the Berry force as computed by an approximate, mean-field electronic structure can be m...
Thesis (Ph.D.)--University of Washington, 2020Simulating and understanding magnetic properties are e...
The orbital magnetic moment due to rotation or pseudorotation in a molecule or a solid and the corre...
We give an account of some recent advances in the development of ab initio methods for the calculati...
The mechanisms of negative magnetoresistance in various topological materials have been the center o...
A topology file provides the physical parameters necessary for Molecular Dynamic (MD) simulations. A...
From the inception of nuclear magnetic resonance as a spectroscopic technique, the local origin of c...