Magnetic-field switching of crystal structure in an orbital-spin-coupled system: MnV2O4

We studied the magnetic and structural properties of spinel MnV2O4, which has S=5/2 spin with no orbital degrees of freedom on the Mn2+ site and S=1 spin and three orbital degrees of freedom on the V3+ site. We found that the ferrimagnetic ordering at TN=56.5K and the structural phase transition at...

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Veröffentlicht in:Physical review letters 2005-11, Vol.95 (19), p.197202.1-197202.4
Hauptverfasser: ADACHI, K, SUZUKI, T, KATO, K, OSAKA, K, TAKATA, M, KATSUFUJI, T
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Sprache:eng
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Zusammenfassung:We studied the magnetic and structural properties of spinel MnV2O4, which has S=5/2 spin with no orbital degrees of freedom on the Mn2+ site and S=1 spin and three orbital degrees of freedom on the V3+ site. We found that the ferrimagnetic ordering at TN=56.5K and the structural phase transition at Ts=53.5K are closely correlated in this compound and found a switching of crystal structure between cubic and tetragonal phases by the magnetic field. This phenomenon can be explained by the coupling between orbital and spin degrees of freedom in the t2g states of the V site.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.95.197202