Vibronic exciton theory of singlet fission. I. Linear absorption and the anatomy of the correlated triplet pair state
arXiv:1703.01173 · doi:10.1063/1.4982362
Abstract
Recent time-resolved spectroscopic experiments have indicated that vibronic coupling plays a vital role in facilitating the process of singlet fission. In this work, which forms the first article of a series, we set out to unravel the mechanisms underlying singlet fission through a vibronic exciton theory. We formulate a model in which both electronic and vibrational degrees of freedom are treated microscopically and non-perturbatively. Using pentacene as a prototypical material for singlet fission, we subject our theory to comparison with measurements on polarization-resolved absorption of single crystals, and employ our model to characterize the excited states underlying the absorption band. Special attention is given to convergence of photophysical observables with respect to the basis size employed, through which we determine the optimal basis for more expensive calculations to be presented in subsequent work. We furthermore evaluate the energetic separation between the optically prepared singlet excited state and the correlated triplet pair state, as well as provide a real-space characterization of the latter, both of which are of key importance in the discussion of fission dynamics. We discuss our results in the context of recent experimental studies.
References in corpus (1)
Cited by in corpus (11)
- Time-dependent Density Matrix Renormalization Group Quantum Dynamics for Realistic Chemical Systems
- Vibronic exciton theory of singlet fission. III. How vibronic coupling and thermodynamics promote rapid triplet generation in pentacene crystals
- Origins of singlet fission in solid pentacene from an ab initio Green's-function approach
- Orbital-resolved Observation of Singlet Fission
- Multi-set matrix product state calculations reveal mobile Franck-Condon excitations under strong Holstein-type coupling
- Vibronic exciton theory of singlet fission. II. Two-dimensional spectroscopic detection of the correlated triplet pair state
- Quantum Beats of a Multiexciton State in Rubrene Single Crystals
- Effect of off-diagonal exciton-phonon coupling on intramolecular singlet fission
- Quantum dynamics simulation of intramolecular singlet fission in covalently linked tetracene dimer
- Wavefunction-Based Analysis of Dynamics Versus Yield of Free Triplets in Intramolecular Singlet Fission
- Quantum Algorithm for Vibronic Dynamics: Case Study on Singlet Fission Solar Cell Design