M. Capone et al., SMALL-POLARON FORMATION AND OPTICAL-ABSORPTION IN SU-SCHRIEFFER-HEEGER AND HOLSTEIN MODELS, Physical review. B, Condensed matter, 56(8), 1997, pp. 4484-4493
The conditions leading to small-polaron formation for a single charge
carrier in the Su-Schrieffer-Heeger (SSH) model are compared with the
Holstein model. From analytic perturbation theory and exact numerical
diagonalization of small clusters different criteria are established,
which however have a common physical origin: Polaron formation require
s a sizable mass enhancement and a lattice deformation energy gain lar
ger than the loss in the bare electron kinetic energy in both models.
The optical absorption of the Su-Schrieffer-Heeger model in the polaro
nic regime is also shown to exhibit an additional feature not present
in the Holstein model. This additional feature arises due to the bond
nature of small polarons in the SSH model, and is determined by transi
tions from the ground state of the bonding character on a shortened bo
nd to excited states of the antibonding character on the same shortene
d bond.