This study details the conditions under which strong-coupling perturbation theory can be applied to the molecular crystal model, a fundamental theoretical tool for analysis of the polaron properties. I show that lattice dimensionality and intermolecular forces play a key role in imposing constraints on the applicability of the perturbative approach. The polaron effective mass has been computed in different regimes ranging from the fully antiadiabatic to the fully adiabatic. The polaron masses become essentially dimension independent for sufficiently strong intermolecular coupling strengths and converge to much lower values than those traditionally obtained in small-polaron theory. I find evidence for a self-trapping transition in a mo...
We study the effects of lattice type on polaron dynamics using a continuous-time quantum Monte-Carlo...
We study the effects of lattice type on polaron dynamics using a continuous-time quantum Monte-Carlo...
We study the effects of lattice type on polaron dynamics using a continuous-time quantum Monte Carlo...
This study details the conditions under which strong-coupling perturbation theory can be applied to ...
This numerical study of the Holstein model in the adiabatic regime shows that the small polaron prop...
The Holstein Molecular Crystal Model is investigated by a strong coupling perturbative method which,...
We present the numerically exact ground-state energy, effective mass, and isotope exponents of a one...
The Holstein Molecular Crystal Model is investigated by a strong coupling perturbative method which,...
The effects of dimensionality on small-polaron motion have been studied in the framework of the Hols...
The Holstein Molecular Crystal Model is investigated by a strong coupling perturbative method which,...
We present the numerically exact ground state energy, effective mass, and isotope exponents of a one...
We present the numerically exact ground state energy, effective mass, and isotope exponents of a one...
We present the numerically exact ground state energy, effective mass, and isotope exponents of a one...
We study the effects of lattice type on polaron dynamics using a continuous-time quantum Monte-Carlo...
A perturbative study of the Holstein molecular crystal model which accounts for lattice structure a...
We study the effects of lattice type on polaron dynamics using a continuous-time quantum Monte-Carlo...
We study the effects of lattice type on polaron dynamics using a continuous-time quantum Monte-Carlo...
We study the effects of lattice type on polaron dynamics using a continuous-time quantum Monte Carlo...
This study details the conditions under which strong-coupling perturbation theory can be applied to ...
This numerical study of the Holstein model in the adiabatic regime shows that the small polaron prop...
The Holstein Molecular Crystal Model is investigated by a strong coupling perturbative method which,...
We present the numerically exact ground-state energy, effective mass, and isotope exponents of a one...
The Holstein Molecular Crystal Model is investigated by a strong coupling perturbative method which,...
The effects of dimensionality on small-polaron motion have been studied in the framework of the Hols...
The Holstein Molecular Crystal Model is investigated by a strong coupling perturbative method which,...
We present the numerically exact ground state energy, effective mass, and isotope exponents of a one...
We present the numerically exact ground state energy, effective mass, and isotope exponents of a one...
We present the numerically exact ground state energy, effective mass, and isotope exponents of a one...
We study the effects of lattice type on polaron dynamics using a continuous-time quantum Monte-Carlo...
A perturbative study of the Holstein molecular crystal model which accounts for lattice structure a...
We study the effects of lattice type on polaron dynamics using a continuous-time quantum Monte-Carlo...
We study the effects of lattice type on polaron dynamics using a continuous-time quantum Monte-Carlo...
We study the effects of lattice type on polaron dynamics using a continuous-time quantum Monte Carlo...