Self-consistent calculation of magnetization in oxide superconductors
Ravi P. Singh, M. Singh
DOI 10.1103/PhysRevB.46.14069 · Physical Review B
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Abstract
In this paper we have calculated the magnetization as function of temperature for oxide superconductors. We have used the three-dimensional Heisenberg model introducing the anisotropy between the antiferromagnetic (AF) exchange coupling constant in the Cu-O plane and perpendicular to the plane. The Green’s function method is used to evaluate the magnetization. In the random-phase approximation one gets a self-consistent expression for the magnetization. Using this expression we have calculated the magnetization self-consistently as a function of temperature and have compared our theoretical results with experiments. Good agreement between our theory and experiments are found throughout the temperature range. The parameters used in the calculation are Jab=120 meV and Jc=3.00×10−5Jab. Here Jab and Jc are the AF coupling constant in the Cu-O plane and perpendicular to the plane, respectively. The values of these parameters are consistent with the values reported in the literature. The role of the interlayer coupling Jc on the magnetization has been investigated.
Source-reported materials — not catalogue approval
| Formula | Reported Tc (K) | Pressure (GPa) | Type |
|---|---|---|---|
| YBa2Cu3O6+y Archive — visibility unverified Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula. | — | Pressure not reported | unknown |
| La2-xSrxCuO4+y Archive — visibility unverified Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula. | — | Pressure not reported | unknown |
| La2CuO4 Archive — visibility unverified Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula. | — | Pressure not reported | unknown |
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