Delocalized Davydov D1 Ansatz for the Holstein polaron

An efficient, yet very accurate trial wave function, constructed from projecting the well-known Davydov D1 Ansatz onto momentum eigenstates, is employed to study the ground state properties of the generalized Holstein Hamiltonian with simultaneous diagonal and off-diagonal coupling. Ground-state ene...

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Main Authors: Sun, Jin, Duan, Liwei, Zhao, Yang
Other Authors: School of Materials Science & Engineering
Format: Article
Language:English
Published: 2013
Online Access:https://hdl.handle.net/10356/99328
http://hdl.handle.net/10220/11021
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-993282023-07-14T15:52:52Z Delocalized Davydov D1 Ansatz for the Holstein polaron Sun, Jin Duan, Liwei Zhao, Yang School of Materials Science & Engineering An efficient, yet very accurate trial wave function, constructed from projecting the well-known Davydov D1 Ansatz onto momentum eigenstates, is employed to study the ground state properties of the generalized Holstein Hamiltonian with simultaneous diagonal and off-diagonal coupling. Ground-state energies have been obtained with a precision matching that of the computationally much more demanding density-matrix renormalization group method. The delocalized D1 Ansatz lowers the ground-state energies at the Brillouin zone boundary significantly compared with the Toyozawa and Global-Local Ansätze in the weak coupling regime, while considerable improvement is demonstrated to have been achieved over the entire Brillouin zone in the strong coupling regime. Unique solutions are obtained with the delocalized D1 for different initial conditions when the transfer integral is 20 times the phonon frequency at the zone center, implying the absence of any self-trapping discontinuity. The scaled correlation variance is found to fit satisfactorily well with the predictions of the perturbation theories. Published version 2013-07-09T01:09:57Z 2019-12-06T20:06:01Z 2013-07-09T01:09:57Z 2019-12-06T20:06:01Z 2013 2013 Journal Article Sun, J., Duan, L., & Zhao, Y. (2013). Delocalized Davydov D1 Ansatz for the Holstein polaron. Journal of Chemical Physics, 138(17). 0021-9606 https://hdl.handle.net/10356/99328 http://hdl.handle.net/10220/11021 10.1063/1.4802961 en Journal of chemical physics © 2013 AIP Publishing LLC. This paper was published in Journal of Chemical Physics and is made available as an electronic reprint (preprint) with permission of AIP Publishing LLC. The paper can be found at the following official DOI: [http://dx.doi.org/10.1063/1.4802961]. One print or electronic copy may be made for personal use only. Systematic or multiple reproduction, distribution to multiple locations via electronic or other means, duplication of any material in this paper for a fee or for commercial purposes, or modification of the content of the paper is prohibited and is subject to penalties under law. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
description An efficient, yet very accurate trial wave function, constructed from projecting the well-known Davydov D1 Ansatz onto momentum eigenstates, is employed to study the ground state properties of the generalized Holstein Hamiltonian with simultaneous diagonal and off-diagonal coupling. Ground-state energies have been obtained with a precision matching that of the computationally much more demanding density-matrix renormalization group method. The delocalized D1 Ansatz lowers the ground-state energies at the Brillouin zone boundary significantly compared with the Toyozawa and Global-Local Ansätze in the weak coupling regime, while considerable improvement is demonstrated to have been achieved over the entire Brillouin zone in the strong coupling regime. Unique solutions are obtained with the delocalized D1 for different initial conditions when the transfer integral is 20 times the phonon frequency at the zone center, implying the absence of any self-trapping discontinuity. The scaled correlation variance is found to fit satisfactorily well with the predictions of the perturbation theories.
author2 School of Materials Science & Engineering
author_facet School of Materials Science & Engineering
Sun, Jin
Duan, Liwei
Zhao, Yang
format Article
author Sun, Jin
Duan, Liwei
Zhao, Yang
spellingShingle Sun, Jin
Duan, Liwei
Zhao, Yang
Delocalized Davydov D1 Ansatz for the Holstein polaron
author_sort Sun, Jin
title Delocalized Davydov D1 Ansatz for the Holstein polaron
title_short Delocalized Davydov D1 Ansatz for the Holstein polaron
title_full Delocalized Davydov D1 Ansatz for the Holstein polaron
title_fullStr Delocalized Davydov D1 Ansatz for the Holstein polaron
title_full_unstemmed Delocalized Davydov D1 Ansatz for the Holstein polaron
title_sort delocalized davydov d1 ansatz for the holstein polaron
publishDate 2013
url https://hdl.handle.net/10356/99328
http://hdl.handle.net/10220/11021
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