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TMF, 1997, Volume 113, Number 3, Pages 432–437 (Mi tmf1090)  

This article is cited in 10 scientific papers (total in 10 papers)

Electron-phonon interaction of strongly correlated systems. II. Strong coupling limit

V. A. Moskalenko

Institute of Applied Physics Academy of Sciences of Moldova

Abstract: The Hubbard–Holstein model containing interaction between localized electrons and dispersionless phonons is investigated. The frequency of collective mode of the phonon cloud surrounding the polaron is determined in the strong coupling limit. The influence of this mode on the radiation and adsorption processes in the energy spectrum of both localized and delocalized polarons is established. The motion of delocalized polarons is described in the chain diagram approximation, without taking into account multiparticle irreducible Green functions of polarons.

DOI: https://doi.org/10.4213/tmf1090

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English version:
Theoretical and Mathematical Physics, 1997, 113:3, 1559–1563

Bibliographic databases:

Received: 14.08.1997

Citation: V. A. Moskalenko, “Electron-phonon interaction of strongly correlated systems. II. Strong coupling limit”, TMF, 113:3 (1997), 432–437; Theoret. and Math. Phys., 113:3 (1997), 1559–1563

Citation in format AMSBIB
\Bibitem{Mos97}
\by V.~A.~Moskalenko
\paper Electron-phonon interaction of strongly correlated systems. II.~Strong coupling limit
\jour TMF
\yr 1997
\vol 113
\issue 3
\pages 432--437
\mathnet{http://mi.mathnet.ru/tmf1090}
\crossref{https://doi.org/10.4213/tmf1090}
\transl
\jour Theoret. and Math. Phys.
\yr 1997
\vol 113
\issue 3
\pages 1559--1563
\crossref{https://doi.org/10.1007/BF02634515}
\isi{http://gateway.isiknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&DestLinkType=FullRecord&DestApp=ALL_WOS&KeyUT=000072911400006}


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    This publication is cited in the following articles:
    1. Loktev, VM, “Order parameter fluctuations and superconducting transition temperature in quasi-2D metals with arbitrary carrier density”, Low Temperature Physics, 24:8 (1998), 578  crossref  adsnasa  isi  scopus  scopus  scopus
    2. Moskalenko, VA, “Strong interaction of correlated electrons with phonons: A diagrammatic approach”, Physical Review B, 59:1 (1999), 619  crossref  mathscinet  adsnasa  isi  scopus  scopus  scopus
    3. Moskalenko, VA, “Strong interaction of correlated electrons with phonons: Exchange of phonon clouds by polarons”, Journal of Experimental and Theoretical Physics, 97:3 (2003), 632  crossref  adsnasa  isi  scopus  scopus  scopus
    4. Moskalenko, VA, “Strong interaction of correlated electrons with phonons”, Physics of Particles and Nuclei, 36 (2005), S100  isi
    5. Moskalenko, VA, “Strong interaction of correlated electrons with acoustical phonons using the extended Hubbard-Holstein model”, Physical Review B, 74:7 (2006), 075109  crossref  adsnasa  isi  elib  scopus  scopus  scopus
    6. Moskalenka, VA, “Interaction of strongly correlated electrons and acoustical phonons”, Low Temperature Physics, 32:4–5 (2006), 462  crossref  adsnasa  isi  scopus  scopus  scopus
    7. Kharrasov M.Kh., Kyzyrgulov I.R., Khusainov A.T., “Electron-Phonon Interaction in a Spatially Disordered System with a Strong Interelectron Correlation”, Physics of Metals and Metallography, 111:2 (2011), 123–132  crossref  mathscinet  adsnasa  isi  scopus  scopus  scopus
    8. Kharrasov M.Kh., Kyzyrgulov I.R., Khusainov A.T., “Elektron-fononnoe vzaimodeistvie v prostranstvenno neuporyadochennoi sisteme s silnoi mezhelektronnoi korrelyatsiei”, Fizika metallov i metallovedenie, 111:2 (2011), 126–135  elib
    9. V. A. Moskalenko, L. A. Dohotaru, D. F. Digor, I. D. Chebotar', “Dynamics of phonon clouds of correlated polarons”, Theoret. and Math. Phys., 179:2 (2014), 588–595  mathnet  crossref  crossref  adsnasa  isi  elib
    10. Moskalenko V.A. Dohotaru L.A. Digor D.F. Cebotari I.D., “Strong Coupling Diagrammatic Approach To the Anderson-Holstein Hamiltonian”, Proc. Rom. Acad. Ser. A-Math. Phys., 15:2 (2014), 139–145  mathscinet  isi
  • Теоретическая и математическая физика Theoretical and Mathematical Physics
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