Dynamical simulations of polaron transport in conjugated polymers with the inclusion of electron-electron interactions
Haibo Ma, Ulrich Schollwoeck

TL;DR
This study uses advanced dynamical simulations to explore how electron-electron interactions influence polaron transport in conjugated polymers under electric fields, revealing velocity behaviors and stability conditions.
Contribution
It introduces a combined TDDMRG and MD simulation approach to fully account for electron-electron and electron-phonon interactions in polaron transport modeling.
Findings
Polaron velocity increases linearly with electric field in the ohmic region.
Polaron becomes unstable and dissociates at high electric fields.
Electron-electron interactions modulate polaron mobility and stability.
Abstract
Dynamical simulations of polaron transport in conjugated polymers in the presence of an external time-dependent electric field have been performed within a combined extended Hubbard model (EHM) and Su-Schrieffer-Heeger (SSH) model. Nearly all relevant electron-phonon and electron-electron interactions are fully taken into account by solving the time-dependent Schr\"{o}dinger equation for the -electrons and the Newton's equation of motion for the backbone monomer displacements by virtue of the combination of the adaptive time-dependent density matrix renormalization group (TDDMRG) and classical molecular dynamics (MD). We find that after a smooth turn-on of the external electric field the polaron is accelerated at first and then moves with a nearly constant velocity as one entity consisting of both the charge and the lattice deformation. An ohmic region (3 mV/ $\leq…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
