Physical Review B · 2004 · 87 citations · 59 references
Based on the canonical Lang-Firsov transformation of the Hamiltonian we develop a very efficient quantum Monte Carlo algorithm for the Holstein model with one electron. Separation of the fermionic degrees of freedom by a reweighting of the probability distribution leads to a dramatic reduction in computational effort. A principal component representation of the phonon degrees of freedom allows to sample completely uncorrelated phonon configurations. The combination of these elements enables us to perform efficient simulations for a wide range of temperature, phonon frequency, and electron-phonon coupling on clusters large enough to avoid finite-size effects. The algorithm is tested in one dimension and the data are compared with exact-diagonalization results and with existing work. Moreover, the ideas presented here can also be applied to the many-electron case. In the one-electron case considered here, the physics of the Holstein model can be described by a simple variational approach.
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W. P. Su, J. R. Schrieffer, Alan J. Heeger · Physical Review Letters · 1979 · 6.6K citations
Organic Charge-transfer Compound, Polariton Dynamic, Long-chain Polyenes +13
T. Holstein · Annals of Physics · 1959 · 3.2K citations
T. Holstein · Annals of Physics · 1959 · 2.8K citations
Slow Electrons in a Polar Crystal
Richard P. Feynman · Physical Review · 1955 · 1.3K citations
Monte Carlo calculations of coupled boson-fermion systems. I
R. Blankenbecler, D. J. Scalapino, R. Sugar · Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1981 · 1.2K citations
Engineering, Many-body Quantum Physic, Constructive Field Theory +17