Two of the most successful methods that are presently available for simulating the quantum dynamics of condensed phase systems are centroid molecular dynamics (CMD) and ring polymer molecular dynamics (RPMD). Despite their conceptual differences, practical implementations of these methods differ in just two respects: the choice of the Parrinello-Rahman mass matrix and whether or not a thermostat is applied to the internal modes of the ring polymer during the dynamics. Here, we explore a method which is halfway between the two approximations: we keep the path integral bead masses equal to the physical particle masses but attach a Langevin thermostat to the internal modes of the ring polymer during the dynamics. We justify this by showing ana...
We investigate the performance of the recently developed kinetically-constrained ring polymer molecu...
We investigate the performance of the recently developed kinetically-constrained ring polymer molecu...
We address the calculation of microcanonical reaction rates for processes involving significant nucl...
Two of the most successful methods that are presently available for simulating the quantum dynamics ...
Two of the most successful methods that are presently available for simulating the quantum dynamics ...
Two of the most successful methods that are presently available for simulating the quantum dynamics ...
We apply Thermostatted Ring Polymer Molecular Dynamics (TRPMD), a recently-proposed approximate quan...
We demonstrate that the ring-polymer molecular dynamics (RPMD) method is equivalent to an automated ...
We show how the ring-polymer molecular dynamics method can be adapted to calculate approximate Kubo-...
We recently obtained a quantum-Boltzmann-conserving classical dynamics by making a single change to ...
This thesis presents the ring polymer molecular dynamics (RPMD) approximation to the Kubo-transforme...
The thermal rate constants of two prototypical insertion-type reactions, namely, N/O + H<sub>2</sub>...
The state-resolved knowledge of molecular scattering dynamics is paramount to the understanding and ...
This thesis presents the ring polymer molecular dynamics (RPMD) approximation to the Kubo-transforme...
This thesis presents the ring polymer molecular dynamics (RPMD) approximation to the Kubo-transforme...
We investigate the performance of the recently developed kinetically-constrained ring polymer molecu...
We investigate the performance of the recently developed kinetically-constrained ring polymer molecu...
We address the calculation of microcanonical reaction rates for processes involving significant nucl...
Two of the most successful methods that are presently available for simulating the quantum dynamics ...
Two of the most successful methods that are presently available for simulating the quantum dynamics ...
Two of the most successful methods that are presently available for simulating the quantum dynamics ...
We apply Thermostatted Ring Polymer Molecular Dynamics (TRPMD), a recently-proposed approximate quan...
We demonstrate that the ring-polymer molecular dynamics (RPMD) method is equivalent to an automated ...
We show how the ring-polymer molecular dynamics method can be adapted to calculate approximate Kubo-...
We recently obtained a quantum-Boltzmann-conserving classical dynamics by making a single change to ...
This thesis presents the ring polymer molecular dynamics (RPMD) approximation to the Kubo-transforme...
The thermal rate constants of two prototypical insertion-type reactions, namely, N/O + H<sub>2</sub>...
The state-resolved knowledge of molecular scattering dynamics is paramount to the understanding and ...
This thesis presents the ring polymer molecular dynamics (RPMD) approximation to the Kubo-transforme...
This thesis presents the ring polymer molecular dynamics (RPMD) approximation to the Kubo-transforme...
We investigate the performance of the recently developed kinetically-constrained ring polymer molecu...
We investigate the performance of the recently developed kinetically-constrained ring polymer molecu...
We address the calculation of microcanonical reaction rates for processes involving significant nucl...