TY - JOUR
T1 - Atomic arrangement and magnetic properties of LaFeO3-LaMnO3 artificial superlattices
AU - Ueda, Kenji
AU - Tabata, Hitoshi
AU - Kawai, Tomoji
PY - 1999
Y1 - 1999
N2 - Artificial superlattices of LaFeO3-LaMnO3 were formed on SrTiO3(111), (100), and (110) substrates with various stacking periodicity using a pulsed laser deposition technique, and their magnetic properties were controlled by altering the ordering of magnetic ions (Fe or Mn). For superlattices constructed on the (111) plane, all the superlattices showed ferromagnetic (or ferrimagnetic) behaviors and the same Curie temperatures (TC) at 230 K. The magnetization was reduced as the stacking periodicity of the superlattices decreased. On the other hand, in the case of superlattices formed on (110) or (100) substrates, the increase of the spin frustration effect at the LaFeO3-LaMnO3 interface with decreasing the stacking periodicity caused a reduction of TC and magnetization. In particular, spin-glass-like behavior was observed in superlattices of less than 3/3 stacking periodicity.
AB - Artificial superlattices of LaFeO3-LaMnO3 were formed on SrTiO3(111), (100), and (110) substrates with various stacking periodicity using a pulsed laser deposition technique, and their magnetic properties were controlled by altering the ordering of magnetic ions (Fe or Mn). For superlattices constructed on the (111) plane, all the superlattices showed ferromagnetic (or ferrimagnetic) behaviors and the same Curie temperatures (TC) at 230 K. The magnetization was reduced as the stacking periodicity of the superlattices decreased. On the other hand, in the case of superlattices formed on (110) or (100) substrates, the increase of the spin frustration effect at the LaFeO3-LaMnO3 interface with decreasing the stacking periodicity caused a reduction of TC and magnetization. In particular, spin-glass-like behavior was observed in superlattices of less than 3/3 stacking periodicity.
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U2 - 10.1103/PhysRevB.60.R12561
DO - 10.1103/PhysRevB.60.R12561
M3 - Article
AN - SCOPUS:0001000326
SN - 1098-0121
VL - 60
SP - R12561-R12564
JO - Physical Review B - Condensed Matter and Materials Physics
JF - Physical Review B - Condensed Matter and Materials Physics
IS - 18
ER -