Spin blockade, orbital occupation, and charge ordering in La1.5Sr0.5CoO4

Using Co-L2,3 and O-K x-ray absorption spectroscopy, we reveal that the charge ordering in La1.5Sr0.5CoO4 involves high spin (S=3/2) Co2+ and low spin (S=0) Co3+ ions. This provides evidence for the spin-blockade phenomenon as a source for the extremely insulating nature of the La2-xSrxCoO4 series....

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Veröffentlicht in:Physical review letters 2009-03, Vol.102 (11), p.116401-116401
Hauptverfasser: Chang, C F, Hu, Z, Wu, Hua, Burnus, T, Hollmann, N, Benomar, M, Lorenz, T, Tanaka, A, Lin, H-J, Hsieh, H H, Chen, C T, Tjeng, L H
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Sprache:eng
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Zusammenfassung:Using Co-L2,3 and O-K x-ray absorption spectroscopy, we reveal that the charge ordering in La1.5Sr0.5CoO4 involves high spin (S=3/2) Co2+ and low spin (S=0) Co3+ ions. This provides evidence for the spin-blockade phenomenon as a source for the extremely insulating nature of the La2-xSrxCoO4 series. The associated e{g}{2} and e{g}{0} orbital occupation accounts for the large contrast in the Co-O bond lengths and, in turn, the high charge ordering temperature. Yet, the low magnetic ordering temperature is naturally explained by the presence of the nonmagnetic (S=0) Co3+ ions. From the identification of the bands we infer that La1.5Sr0.5CoO4 is a narrow band material.
ISSN:0031-9007
DOI:10.1103/PhysRevLett.102.116401