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- W2090923154 abstract "The bipolaronic system model of an infinite quantum well, in which two electrons or holes are weakly or intermediately coupled with both longitudinal optical (LO) and surface optical (SO) phonons, may be applied to layer-type high- superconductivity. A double unitary transformation of the Hamiltonian is carried out. The numerical results show that when the thickness of the polar slab increases the LO phonon contribution to the binding energy increases but that from the SO phonon decreases. On taking the Coulombic repulsion into account, the binding energy of the bipolaron is found to depend on the distance between the two electrons or holes. It is shown that the potential energy of the effective interaction of the two holes that form the stable bipolaron in a relatively thin polar slab of YBCO has a distinct equilibrium position at its minimum. The magnitude of the binding energy of these two holes becomes larger as the bipolaron size, taken as the equilibrium distance between the holes, becomes smaller." @default.
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- W2090923154 date "1996-04-29" @default.
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- W2090923154 title "Roles of phonon-induced potentials for a bipolaron in a superconductor" @default.
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- W2090923154 doi "https://doi.org/10.1088/0953-8984/8/18/011" @default.
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