We present an efficient set of methods for propagating excited-state dynamics involving a large number of configuration interaction singles (CIS) or Tamm-Dancoff approximation (TDA) single-reference excited states. Specifically, (i) following Head-Gordon et al., we implement an exact evaluation of the overlap of singly-excited CIS/TDA electronic states at different nuclear geometries using a biorthogonal basis and (ii) we employ a unified protocol for choosing the correct phase for each adiabat at each geometry. For many-electron systems, the combination of these techniques significantly reduces the computational cost of integrating the electronic Schrodinger equation and imposes minimal overhead on top of the underlying electronic structur...
Heterogeneous catalysis of adsorbates on metallic surfaces mediated by plasmon has potential high ph...
Photoinduced dynamics of electronic and vibrational unidirectional energy transfer between meta-link...
We present the first ab initio prediction of localized electronic excited states in a periodically i...
We present an efficient set of methods for propagating excited-state dynamics involving a large numb...
We present an efficient set of methods for propagating excited-state dynamics involving a large numb...
The coupled electronic-nuclear dynamics at molecule-metal interfaces are fundamental processes that ...
Thesis (Ph.D.)--University of Washington, 2016-06The microscopic and molecular-level characterizatio...
In this work, a theoretical and computational set of tools to study and analyze time-resolved electr...
This thesis presents new developments in excited state electronic structure theory. Contrasted with...
2019-02-21Computational modeling of photoexcited molecules provides a fundamental understanding of p...
Leveraging localized surface plasmon resonances of metal nanoparticles to trigger chemical reactions...
Molecular dynamics near metal surfaces underlie a number of fields in chemistry, including chemisorp...
The efficiency of plasmonic metallic nanoparticles in harvesting and concentrating light energy in th...
Thesis: S.B., Massachusetts Institute of Technology, Department of Chemistry, 2016.Cataloged from PD...
Understanding excited states is vital to photochemistry and spectroscopy, yet the study of excited s...
Heterogeneous catalysis of adsorbates on metallic surfaces mediated by plasmon has potential high ph...
Photoinduced dynamics of electronic and vibrational unidirectional energy transfer between meta-link...
We present the first ab initio prediction of localized electronic excited states in a periodically i...
We present an efficient set of methods for propagating excited-state dynamics involving a large numb...
We present an efficient set of methods for propagating excited-state dynamics involving a large numb...
The coupled electronic-nuclear dynamics at molecule-metal interfaces are fundamental processes that ...
Thesis (Ph.D.)--University of Washington, 2016-06The microscopic and molecular-level characterizatio...
In this work, a theoretical and computational set of tools to study and analyze time-resolved electr...
This thesis presents new developments in excited state electronic structure theory. Contrasted with...
2019-02-21Computational modeling of photoexcited molecules provides a fundamental understanding of p...
Leveraging localized surface plasmon resonances of metal nanoparticles to trigger chemical reactions...
Molecular dynamics near metal surfaces underlie a number of fields in chemistry, including chemisorp...
The efficiency of plasmonic metallic nanoparticles in harvesting and concentrating light energy in th...
Thesis: S.B., Massachusetts Institute of Technology, Department of Chemistry, 2016.Cataloged from PD...
Understanding excited states is vital to photochemistry and spectroscopy, yet the study of excited s...
Heterogeneous catalysis of adsorbates on metallic surfaces mediated by plasmon has potential high ph...
Photoinduced dynamics of electronic and vibrational unidirectional energy transfer between meta-link...
We present the first ab initio prediction of localized electronic excited states in a periodically i...