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Published June 14, 2022 | Supplemental Material + Submitted
Journal Article Open

Methods to Calculate Electronic Excited-State Dynamics for Molecules on Large Metal Clusters with Many States: Ensuring Fast Overlap Calculations and a Robust Choice of Phase

Abstract

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 structure calculation. As a demonstration, we calculate the electronic excited-state dynamics for a hydrogen molecule scattering off a silver metal cluster, focusing on high-lying excited states, where many electrons can be excited collectively and crossings are plentiful. Interestingly, we find that the high-lying, plasmon-like collective excitation spectrum changes with nuclear dynamics, highlighting the need to simulate non-adiabatic nuclear dynamics and plasmonic excitations simultaneously. In the future, the combination of methods presented here should help theorists build a mechanistic understanding of plasmon-assisted charge transfer and excitation energy relaxation processes near a nanoparticle or metal surface.

Additional Information

© 2022 American Chemical Society. Received: December 27, 2021; Published: May 24, 2022. We thank Christine Aikens for providing the tetrahedral geometries of the silver cluster. This work has been supported by the U.S. Department of Energy, Office of Science, Office of Basic Energy Sciences, under Award no. DE-SC0019397 (JES). It also used resources of the National Energy Research Scientific Computing Center (NERSC), a U.S. Department of Energy Office of Science User Facility operated under Contract no. DE-AC02-05CH11231. The authors declare no competing financial interest.

Attached Files

Submitted - methods-to-calculate-electronic-excited-state-dynamics-for-molecules-on-large-metal-clusters-with-many-states-ensuring-fast-overlap-calculations-and-a-robust-choice-of-phase.pdf

Supplemental Material - ct1c01304_si_001.pdf

Files

ct1c01304_si_001.pdf

Additional details

Created:
August 20, 2023
Modified:
October 23, 2023