Elucidating transport mechanisms is crucial for advancing material design, yet state-of-the-art theory is restricted to exact simulations of small lattices with severe finite-size effects or approximate ones that assume the nature of transport. We leverage algorithmic advances to tame finite-size effects and exactly simulate small polaron formation and transport in the Holstein model. We further analyze the applicability of the ubiquitously used equilibrium-based Green–Kubo relations and nonequilibrium methods to predict charge mobility. We find that these methods can converge to different values and track this disparity to finite-size dependence and the sensitivity of Green–Kubo relations to the system’s topology. Contrary to standard pert...
By means of a 2-D tight-binding model with lattice relaxation in a first-order expansion, we report ...
Charge carrier transport in organic semiconductors is at the heart of many revolutionary technologi...
Combining the multiple Davydov D2 Ansatz with the method of thermo-field dynamics, we study finite t...
We extend the Feynman variational approach to the polaron problem \cite{Feynman1955} to the Holstein...
The effects of dimensionality on small-polaron motion have been studied in the framework of the Hols...
This study details the conditions under which strong-coupling perturbation theory can be applied to ...
Polarons are composite quasiparticles comprising electronic charge carriers taken together with the ...
There is considerable evidence for the persistence of small polaron like entities in colossal magnet...
There is considerable evidence for the persistence of small polaron-like entities in colossal magnet...
International audienceWe derive an effective cluster model to address the transport properties of mu...
In a number of physical situations, from polarons to Dirac liquids and to non-Fermi liquids, one enc...
There is a growing understanding that transport properties of complex oxides and individual molecule...
We developed an accurate model accounting for electron-phonon interaction in colloidal quantum dot s...
We study the effects of lattice type on polaron dynamics using a continuous-time quantum Monte Carlo...
This numerical study of the Holstein model in the adiabatic regime shows that the small polaron prop...
By means of a 2-D tight-binding model with lattice relaxation in a first-order expansion, we report ...
Charge carrier transport in organic semiconductors is at the heart of many revolutionary technologi...
Combining the multiple Davydov D2 Ansatz with the method of thermo-field dynamics, we study finite t...
We extend the Feynman variational approach to the polaron problem \cite{Feynman1955} to the Holstein...
The effects of dimensionality on small-polaron motion have been studied in the framework of the Hols...
This study details the conditions under which strong-coupling perturbation theory can be applied to ...
Polarons are composite quasiparticles comprising electronic charge carriers taken together with the ...
There is considerable evidence for the persistence of small polaron like entities in colossal magnet...
There is considerable evidence for the persistence of small polaron-like entities in colossal magnet...
International audienceWe derive an effective cluster model to address the transport properties of mu...
In a number of physical situations, from polarons to Dirac liquids and to non-Fermi liquids, one enc...
There is a growing understanding that transport properties of complex oxides and individual molecule...
We developed an accurate model accounting for electron-phonon interaction in colloidal quantum dot s...
We study the effects of lattice type on polaron dynamics using a continuous-time quantum Monte Carlo...
This numerical study of the Holstein model in the adiabatic regime shows that the small polaron prop...
By means of a 2-D tight-binding model with lattice relaxation in a first-order expansion, we report ...
Charge carrier transport in organic semiconductors is at the heart of many revolutionary technologi...
Combining the multiple Davydov D2 Ansatz with the method of thermo-field dynamics, we study finite t...