Condensed Matter Physics, 2010, vol. 13, No. 1, p. 13003:1-7
DOI:10.5488/CMP.13.13003
Title:
Phase diagrams of the Bose-Fermi-Hubbard model: Hubbard operator approach
Author(s):
 
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I.V. Stasyuk
(Institute for Condensed Matter Physics of the National Academy of Sciences of Ukraine, 1 Svientsitskii Str., 79011 Lviv, Ukraine)
,
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T.S. Mysakovych
(Institute for Condensed Matter Physics of the National Academy of Sciences of Ukraine, 1 Svientsitskii Str., 79011 Lviv, Ukraine)
,
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V.O. Krasnov
(Institute for Condensed Matter Physics of the National Academy of Sciences of Ukraine, 1 Svientsitskii Str., 79011 Lviv, Ukraine)
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The phase transitions in the Bose-Fermi-Hubbard model are
investigated. The boson Green's function is calculated in the random
phase approximation (RPA) and the formalism of the Hubbard operators
is used. The regions of existence of the superfluid and Mott
insulator phases are established and the (μ,t) (the boson
chemical potential vs. hopping parameter) phase diagrams are built
at different values of boson-fermion interaction constant (in the
regimes of fixed chemical potential or fixed concentration of
fermions). The effect of temperature change on this transition is
analyzed and the phase diagrams in the (T,μ) plane are
constructed. The role of thermal activation of the ion hopping is
investigated by taking into account the temperature dependence of
the transfer parameter. The reconstruction of the Mott-insulator
lobes due to this effect is analyzed.
Key words:
Bose-Fermi-Hubbard model, phase transitions, thermal activation
PACS: 03.75.Lm, 37.10.Jk, 67.85.Pq
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