The coupled quantum dynamics of electrons and protons is ubiquitous in many dynamical processes involving light-matter interaction, such as solar energy conversion in chemical systems and photosynthesis. A first-principles description of such nuclear-electronic quantum dynamics requires not only the time-dependent treatment of nonequilibrium electron dynamics but also that of quantum protons. Quantum mechanical correlation between electrons and protons adds further complexity to such coupled dynamics. Here we extend real-time nuclear-electronic orbital time-dependent density functional theory (RT-NEO-TDDFT) to periodic systems and perform first-principles simulations of coupled quantum dynamics of electrons and protons in complex heterogene...
The quantum mechanical treatment of both electrons and protons in the calculation of excited state p...
The excited-state intramolecular proton transfer (ESIPT) is reviewed for several benchmark systems [...
Photochemical reactions, which involve both the ground and excited electronic states of a molecule, ...
The coupled quantum dynamics of electrons and protons is ubiquitous in many dynamical processes invo...
An understanding of dynamical properties of matter is often essential to developing a deeper underst...
Developing a predictive understanding of the behaviors of molecules and materials requires examinati...
The increasing need to simulate the dynamics of photoexcited molecular systems and nanosystems in th...
The combination of time-dependent density functional theory (TDDFT) for the description of excited s...
The processes which occur after molecules absorb light underpin an enormous range of fundamental tec...
DoctorFunctional molecular devices containing molecular mechanical, photonic, and electronic devices...
Thesis (Ph.D.)--University of Washington, 2015Understanding electronic behavior in molecular and nan...
We present a combination of time-dependent density functional theory with the quantum mechanical/mol...
An extension of the nonadiabatic quantum molecular dynamics approach is presented to account for ele...
The real-time time-dependent density functional theory (rt-TDDFT) approach, which is complementary t...
The combination of time-dependent d. functional theory (TDDFT) for the description of excited states...
The quantum mechanical treatment of both electrons and protons in the calculation of excited state p...
The excited-state intramolecular proton transfer (ESIPT) is reviewed for several benchmark systems [...
Photochemical reactions, which involve both the ground and excited electronic states of a molecule, ...
The coupled quantum dynamics of electrons and protons is ubiquitous in many dynamical processes invo...
An understanding of dynamical properties of matter is often essential to developing a deeper underst...
Developing a predictive understanding of the behaviors of molecules and materials requires examinati...
The increasing need to simulate the dynamics of photoexcited molecular systems and nanosystems in th...
The combination of time-dependent density functional theory (TDDFT) for the description of excited s...
The processes which occur after molecules absorb light underpin an enormous range of fundamental tec...
DoctorFunctional molecular devices containing molecular mechanical, photonic, and electronic devices...
Thesis (Ph.D.)--University of Washington, 2015Understanding electronic behavior in molecular and nan...
We present a combination of time-dependent density functional theory with the quantum mechanical/mol...
An extension of the nonadiabatic quantum molecular dynamics approach is presented to account for ele...
The real-time time-dependent density functional theory (rt-TDDFT) approach, which is complementary t...
The combination of time-dependent d. functional theory (TDDFT) for the description of excited states...
The quantum mechanical treatment of both electrons and protons in the calculation of excited state p...
The excited-state intramolecular proton transfer (ESIPT) is reviewed for several benchmark systems [...
Photochemical reactions, which involve both the ground and excited electronic states of a molecule, ...