Title of article :
Mِssbauer characterization of 119Sn4 + Dopant ions in the antiferromagnetic ilmenite NiTiO3
Author/Authors :
Fabritchnyi، نويسنده , , P.B. and Wattiaux، نويسنده , , A. and Korolenko، نويسنده , , M.V and Afanasov، نويسنده , , M.I. and Delmas، نويسنده , , C.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Abstract :
Magnetic hyperfine splitting of the 119Sn4+ nuclear levels in the antiferromagnetic NiTiO3 was for the first time observed using the Mِssbauer effect. For the majority of the 119Sn4+ dopant ions, the saturation value of the transferred hyperfine field (at 4.2 K, H = 5.25 T ) is found to be equal to that previously reported for 119Sn4+ in the antiferromagnetic MnTiO3. This finding shows that in both ilmenites the spin polarization of Sn4+ is produced by the divalent cation half-filled e g 2 orbitals involved in interlayer superexchange interactions and implies the location of the dopant within titanium (111) layers. The principal V z z component of the EFG at the Sn4+ site in NiTiO3 is found to have a positive sign and be aligned along the [111] axis, as it was the case for Sn4+ in MnTiO3. Lattice-sum calculations on the basis of a simple ionic point-charge model, lead to an erroneous result (in either titanate the sign of V z z on the Ti4+ site would be negative) and thus demonstrate their failure in identifying the Sn sites.
Keywords :
A. Magnetically ordered materials , B. Chemical synthesis , C. Point defects , D. Exchange and superexchange
Journal title :
Solid State Communications
Journal title :
Solid State Communications