Simulating molecular dynamics directly on quantum chemically obtained potential energy surfaces is generally time consuming. The cost becomes overwhelming especially when excited state dynamics is aimed with multiple electronic states. The interpolated potential has been suggested as a remedy for the cost issue in various simulation settings ranging from fast gas phase reactions of small molecules to relatively slow condensed phase dynamics with complex surrounding. Here, we present a scheme for interpolating multiple electronic surfaces of a relatively large molecule, with an intention of applying it to studying nonadiabatic behaviors. The scheme starts with adiabatic potential information and its diabatic transformation, both of which can...
In this work, the advantages of a locally diabatic propagation of the electronic wave function in su...
Thesis (Ph.D.)--University of Washington, 2013Non-adiabatic molecular dynamics methods have been dev...
We introduce a protocol to represent quantum states as a linear superposition of model electronic di...
Simulations of photophysical processes in biological systems are essential for understanding the rol...
Understanding photochemical processes often requires accurate descriptions of the nonadiabatic event...
An accurate description of nonbonded interactions is important in investigating dynamics of molecula...
Constructing a reliable potential energy surface (PES) is a key step toward computationally studying...
An accurate description of nonbonded interactions is important in investigating dynamics of molecula...
The interpolation technique has shown many promises for simulating chemical dynamics with quantum ch...
A method for computing coupled, diabatic state representations of the lowest electronic states coupl...
A new method were developed for constructing diabatic potential energy matrices from ab initio quant...
Wittenbrink N, Venghaus F, Williams D, Eisfeld W. A new approach for the development of diabatic pot...
A method for constructing diabatic potential-energy matrices from ab initio quantum chemistry data i...
Nonadiabatic dynamics simulations have rapidly become an indispensable tool for understanding ultraf...
In this work, the advantages of a locally diabatic propagation of the electronic wave function in su...
In this work, the advantages of a locally diabatic propagation of the electronic wave function in su...
Thesis (Ph.D.)--University of Washington, 2013Non-adiabatic molecular dynamics methods have been dev...
We introduce a protocol to represent quantum states as a linear superposition of model electronic di...
Simulations of photophysical processes in biological systems are essential for understanding the rol...
Understanding photochemical processes often requires accurate descriptions of the nonadiabatic event...
An accurate description of nonbonded interactions is important in investigating dynamics of molecula...
Constructing a reliable potential energy surface (PES) is a key step toward computationally studying...
An accurate description of nonbonded interactions is important in investigating dynamics of molecula...
The interpolation technique has shown many promises for simulating chemical dynamics with quantum ch...
A method for computing coupled, diabatic state representations of the lowest electronic states coupl...
A new method were developed for constructing diabatic potential energy matrices from ab initio quant...
Wittenbrink N, Venghaus F, Williams D, Eisfeld W. A new approach for the development of diabatic pot...
A method for constructing diabatic potential-energy matrices from ab initio quantum chemistry data i...
Nonadiabatic dynamics simulations have rapidly become an indispensable tool for understanding ultraf...
In this work, the advantages of a locally diabatic propagation of the electronic wave function in su...
In this work, the advantages of a locally diabatic propagation of the electronic wave function in su...
Thesis (Ph.D.)--University of Washington, 2013Non-adiabatic molecular dynamics methods have been dev...
We introduce a protocol to represent quantum states as a linear superposition of model electronic di...