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The combined effect of lattice’s uniaxial strains and electron–phonon interaction’s screening on TBEC of the intersite bipolarons

Bakhrom YavidovNukus State Pedagogical Institute named after A’jiniyaz, 230105 Nukus, UzbekistanDilshat DjumanovInstitute of Nuclear Physics, 100214 Ulughbek, Tashkent, UzbekistanT. SaparbaevL.N.Gumilyov Eurasian National University, 010008 Astana, KazakhstanO. GaniyevInstitute of Nuclear Physics, 100214 Ulughbek, Tashkent, UzbekistanS. ZholdassovaAktobe Regional State University named after K.Zhubanov, 030000 Aktobe, KazakhstanS. K. TulepbergenovAktobe Regional State University named after K.Zhubanov, 030000 Aktobe, KazakhstanU.T. KurbanovInstitute of Nuclear Physics, 100214 Ulughbek, Tashkent, Uzbekistan
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Having accepted a more generalized form for density-displacement type electron–phonon interaction (EPI) force we studied the simultaneous effect of uniaxial strains and EPI’s screening on the temperature of Bose–Einstein condensation [Formula: see text] of the ideal gas of intersite bipolarons. [Formula: see text] of the ideal gas of intersite bipolarons is calculated as a function of both strain and screening radius for a one-dimensional chain model of cuprates within the framework of Extended Holstein–Hubbard model. It is shown that the chain model lattice comprises the essential features of cuprates regarding of strain and screening effects on transition temperature [Formula: see text] of superconductivity. The obtained values of strain derivatives of [Formula: see text] [Formula: see text] are in qualitative agreement with the experimental values of [Formula: see text] [Formula: see text] of La[Formula: see text]Sr[Formula: see text]CuO 4 under moderate screening regimes.

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