MesoHOPS: Size-invariant scaling calculations of multi-excitation open quantum systems

Author:

Citty Brian1,Lynd Jacob K.1ORCID,Gera Tarun1ORCID,Varvelo Leonel2ORCID,Raccah Doran I. G. B.1ORCID

Affiliation:

1. Department of Chemistry, University of Texas at Austin 1 , Austin, Texas 78712, USA

2. Department of Chemistry, Southern Methodist University 2 , PO Box 750314 Dallas, Texas 75205, USA

Abstract

The photoexcitation dynamics of molecular materials on the 10–100 nm length scale depend on complex interactions between electronic and vibrational degrees of freedom, rendering exact calculations difficult or intractable. The adaptive Hierarchy of Pure States (adHOPS) is a formally exact method that leverages the locality imposed by interactions between thermal environments and electronic excitations to achieve size-invariant scaling calculations for single-excitation processes in systems described by a Frenkel–Holstein Hamiltonian. Here, we extend adHOPS to account for arbitrary couplings between thermal environments and vertical excitation energies, enabling formally exact, size-invariant calculations that involve multiple excitations or states with shared thermal environments. In addition, we introduce a low-temperature correction and an effective integration of the noise to reduce the computational expense of including ultrafast vibrational relaxation in Hierarchy of Pure States (HOPS) simulations. We present these advances in the latest version of the open-source MesoHOPS library and use MesoHOPS to characterize charge separation at a one-dimensional organic heterojunction when both the electron and hole are mobile.

Funder

Welch Foundation

University of Texas at Austin

National Science Foundation

Southern Methodist University

Publisher

AIP Publishing

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