TY - JOUR
T1 - Observation of modulated magnetic long-range order
AU - Suzuki, T.
AU - Goto, T.
AU - Chiba, K.
AU - Shinoda, T.
AU - Fukase, T.
AU - Kimura, H.
AU - Yamada, K.
PY - 1998
Y1 - 1998
N2 - Magnetic superlattice peaks are observed in single-crystal neutron-diffraction measurements on orthorhombic (Formula presented) at reciprocal points of (1/2±ε,1/2,0) and (1/2,1/2±ε,0) in the tetragonal notation where (Formula presented)0.126(Formula presented)0.003. The La NMR measurement reveals a broadening of the field-swept spectrum below (Formula presented)45 K corresponding to the existence of magnetic order. The remarkable softening of longitudinal sound waves along [110] is observed in the same crystal. The features observed in the neutron diffraction, NMR, and ultrasonic measurements suggest that the dynamical incommensurate spin correlation is pinned by a lattice instability toward the low-temperature tetragonal phase.
AB - Magnetic superlattice peaks are observed in single-crystal neutron-diffraction measurements on orthorhombic (Formula presented) at reciprocal points of (1/2±ε,1/2,0) and (1/2,1/2±ε,0) in the tetragonal notation where (Formula presented)0.126(Formula presented)0.003. The La NMR measurement reveals a broadening of the field-swept spectrum below (Formula presented)45 K corresponding to the existence of magnetic order. The remarkable softening of longitudinal sound waves along [110] is observed in the same crystal. The features observed in the neutron diffraction, NMR, and ultrasonic measurements suggest that the dynamical incommensurate spin correlation is pinned by a lattice instability toward the low-temperature tetragonal phase.
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U2 - 10.1103/PhysRevB.57.R3229
DO - 10.1103/PhysRevB.57.R3229
M3 - Article
AN - SCOPUS:0000508122
SN - 0163-1829
VL - 57
SP - R3229-R3232
JO - Physical Review B-Condensed Matter
JF - Physical Review B-Condensed Matter
IS - 6
ER -