We extend ring-polymer molecular dynamics (RPMD) to allow for the direct simulation of general, electronically non-adiabatic chemical processes. The kinetically constrained (KC) RPMD method uses the imaginary-time path-integral representation in the set of nuclear coordinates and electronic states to provide continuous equations of motion that describe the quantized, electronically non-adiabatic dynamics of the system. KC-RPMD preserves the favorable properties of the usual RPMD formulation in the position representation, including rigorous detailed balance, time-reversal symmetry, and invariance of reaction rate calculations to the choice of dividing surface. However, the new method overcomes significant shortcomings of position-representa...
The thermal rate constants of two prototypical insertion-type reactions, namely, N/O + H<sub>2</sub>...
A new method based on an extension of ring-polymer molecular dynamics is proposed for the calculatio...
We investigate the mechanisms of condensed phase proton-coupled electron transfer (PCET) using Mappi...
We extend ring-polymer molecular dynamics (RPMD) to allow for the direct simulation of general, elec...
We investigate the performance of the recently developed kinetically-constrained ring polymer molecu...
The simulation of general non-adiabatic processes, such as electron transfer, proton-transfer, and p...
The use of ring polymer molecular dynamics (RPMD) for the direct simulation of electron transfer (ET...
We derive the non-adiabatic ring polymer molecular dynamics (RPMD) approach in the phase space of th...
The coupled transfer of electrons and protons is a central feature of biological and molecular catal...
Understanding the mechanisms and timescales of charge and energy transfer processes in large, comple...
Mapping variable ring polymer molecular dynamics (MV-RPMD) is an approximate quantum dynamics method...
We address the calculation of microcanonical reaction rates for processes involving significant nucl...
Accurately and efficiently simulating open quantum systems, such as electronic states interacting wi...
In this thesis I generalize Ring Polymer Molecular Dynamics (RPMD) rate theory to electronically non...
We demonstrate that the ring-polymer molecular dynamics (RPMD) method is equivalent to an automated ...
The thermal rate constants of two prototypical insertion-type reactions, namely, N/O + H<sub>2</sub>...
A new method based on an extension of ring-polymer molecular dynamics is proposed for the calculatio...
We investigate the mechanisms of condensed phase proton-coupled electron transfer (PCET) using Mappi...
We extend ring-polymer molecular dynamics (RPMD) to allow for the direct simulation of general, elec...
We investigate the performance of the recently developed kinetically-constrained ring polymer molecu...
The simulation of general non-adiabatic processes, such as electron transfer, proton-transfer, and p...
The use of ring polymer molecular dynamics (RPMD) for the direct simulation of electron transfer (ET...
We derive the non-adiabatic ring polymer molecular dynamics (RPMD) approach in the phase space of th...
The coupled transfer of electrons and protons is a central feature of biological and molecular catal...
Understanding the mechanisms and timescales of charge and energy transfer processes in large, comple...
Mapping variable ring polymer molecular dynamics (MV-RPMD) is an approximate quantum dynamics method...
We address the calculation of microcanonical reaction rates for processes involving significant nucl...
Accurately and efficiently simulating open quantum systems, such as electronic states interacting wi...
In this thesis I generalize Ring Polymer Molecular Dynamics (RPMD) rate theory to electronically non...
We demonstrate that the ring-polymer molecular dynamics (RPMD) method is equivalent to an automated ...
The thermal rate constants of two prototypical insertion-type reactions, namely, N/O + H<sub>2</sub>...
A new method based on an extension of ring-polymer molecular dynamics is proposed for the calculatio...
We investigate the mechanisms of condensed phase proton-coupled electron transfer (PCET) using Mappi...