Commensurate magnetic structures ofRMn2O5 (R=Y, Ho, Bi) determined by Single-crystal Neutron Diffraction
Комменсурованные магнитные структуры RMn2O5 (R = Y, Ho, Bi), определённые методом нейтронной дифракции на одном кристалле
2007-10-10
SCID: 54.1/qxq62fnt
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RMn2O5 (R = Y, Ho, Bi)c-axis magnetic component (phase quadrature with ab components)commensurate magnetic structuresingle-crystal neutron diffractionzig-zag antiferromagnetic chains
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Abstract (AI)
Precise magnetic structures of RMn2O5, with R= Y, Ho, Bi in the commensurate/ferroelectric regime, have been determined by single-crystal neutron diffraction. For each system, the integrated intensities of a large number of independent magnetic Bragg reflections have been measured, allowing unconstrained least-squares refinement of the structures. The analysis confirms the previously reported magnetic configuration in the ab-plane, in particular the existence of zig-zag antiferromagnetic chains. For the Y and Ho compounds additional weak magnetic components parallel to the c-axis were detected which are modulated in phase quadrature with the a-b components. This component is extremely small in the BiMn2O5 sample, therefore supporting symmetric exchange as the principal mechanism inducing ferroelectricity. For HoMn2O5, a magnetic ordering of the Ho moments was observed, which is consistent with a super-exchange interaction through the oxygens. For all three compounds, the point symmetry in the magnetically ordered state is m2m, allowing the polar b-axis found experimentally.
Key Findings
1
BiMn2O5 has an extremely small c-axis magnetic component, supporting symmetric exchange as the principal mechanism inducing ferroelectricity.
2
HoMn2O5 exhibits magnetic ordering of Ho moments consistent with super-exchange mediated through oxygen atoms.
3
Precise commensurate magnetic structures of RMn2O5 (R = Y, Ho, Bi) in the ferroelectric regime were determined by single-crystal neutron diffraction using many independent magnetic Bragg reflections.
4
Refined structures confirm the previously reported ab-plane magnetic configuration, specifically the presence of zig-zag antiferromagnetic chains.
5
The magnetically ordered state of all three compounds has point symmetry m2m, which permits the experimentally observed polar b-axis.
6
Y and Ho compounds show additional weak magnetic components along the c-axis that are modulated in phase quadrature with the ab-plane components.
Research Object
Commensurate magnetic structures of RMn2O5 (R = Y, Ho, Bi) in the ferroelectric/commensurate regime as determined by single-crystal neutron diffraction
Research Subject
Detailed magnetic ordering including in‑plane zig-zag antiferromagnetic chains, small c-axis modulated components (phase-quadrature with a-b components), Ho moment ordering via super-exchange, and resulting point symmetry (m2m) enabling the polar b-axis, as revealed by integrated magnetic Bragg intensities and least-squares refinement
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2007-10-10
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