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Orbital order and ferrimagnetic properties of Sr8CaRe3Cu4O24
Xiangang Wan1, Masanori Kohno, Xiao Hu
1Computational Materials Science Center, National Institute for Materials Science, Tsukuba 305-0047, Japan.
Abstract:
By means of the LSDA+U (local spin density approximation plus Hubbard U) method and the Green function method, we investigate the electronic and magnetic properties of the new material of Sr8CaRe3Cu4O24. Our LSDA+U calculation shows that this system is an insulator of ferrimagnetism with a net magnetic moment of 1.01 micro(B)/f.u., which is in good agreement with the experiment. It is the nonmagnetic Re atoms that induce an orbital order of d electrons of Cu atoms, which is responsible for the strong exchange interaction and the high magnetic transition temperature. Based on the LSDA+U results, we introduce an effective model for the spin degrees of freedom and investigate the finite-temperature properties by the Green function method. The obtained results are consistent with the experimental results, indicating that the spin-alternating Heisenberg model is suitable for this compound.
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