Magnetic ordering and spin excitations in Mn(dca)2(pyz) [dca = N(CN)2-, pyz = pyrazine]

被引:0
|
作者
J.L. Manson
H.N. Bordallo
J.W. Lynn
Q. Huang
R. Feyerherm
A. Loose
L. Chapon
D.N. Argyriou
机构
[1] Materials Science Division,
[2] Argonne National Laboratory,undefined
[3] Argonne,undefined
[4] IL 60439,undefined
[5] USA,undefined
[6] Intense Pulsed Neutron Source,undefined
[7] Argonne National Laboratory,undefined
[8] Argonne,undefined
[9] IL 60439,undefined
[10] USA,undefined
[11] NIST Center for Neutron Research,undefined
[12] Gaithersburg,undefined
[13] MD 20899,undefined
[14] USA,undefined
[15] Hahn-Meitner Institute and Berlin Neutron Scattering Center,undefined
[16] 14109 Berlin,undefined
[17] Germany,undefined
来源
Applied Physics A | 2002年 / 74卷
关键词
PACS: 61.12.Ld; 75.30.Kz; 75.50.Xx;
D O I
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中图分类号
学科分类号
摘要
We have studied the T- and H-dependent magnetism in Mn(dca)2(pyz) [dca = N(CN)2-, pyz = pyrazine] using neutron-scattering methods. The crystal structure can be viewed as a molecular analog of ReO3, where 1D Mn–pyz–Mn chains connect 2D Mn(dca)2 square sheets to form a 3D network. In zero field, the Mn2+ moments order antiferromagnetically below 2.53(2) K along the ac diagonal with a magnitude of 4.15(6) μB at 1.35 K. The field-dependent response of the [111] magnetic reflection is consistent with spin-flop and induced ferromagnetic phase transitions as previously observed in magnetization measurements. Diffuse-scattering studies indicated no evidence for low-dimensional spin correlations. Using quasielastic neutron scattering, a low-energy spin-wave excitation was observed at ∼0.23 meV, which is ∼1/6 the momentum transfer observed in Mn(dca)2 owing to a reduced number of magnetic nearest neighbors.
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页码:s722 / s724
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