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Magnetic phase transition and the corresponding magnetostriction of intermetallic compounds RMnsGe2(R=Sm,Gd)
引用本文:郭光华,吴烨,张海贝,D A Filippov,R Z Levitin,V V Snegirev.Magnetic phase transition and the corresponding magnetostriction of intermetallic compounds RMnsGe2(R=Sm,Gd)[J].中国物理 B,2002,11(6):608-612.
作者姓名:郭光华  吴烨  张海贝  D A Filippov  R Z Levitin  V V Snegirev
作者单位:Department of Applied Physics, Central South University, Changsha 410083, China;Department of Applied Physics, Central South University, Changsha 410083, China;Department of Applied Physics, Central South University, Changsha 410083, China;Department of Physics, M V Lomonosov Moscow State University, Moscow 119899, Russia;Department of Physics, M V Lomonosov Moscow State University, Moscow 119899, Russia;Department of Physics, M V Lomonosov Moscow State University, Moscow 119899, Russia
基金项目:Project supported by the Scientific Research Foundation for the Returned Overseas Chinese Scholars, the National Education Ministry of China.
摘    要:The temperature dependence of lattice constants a and c of intermetallic compounds RMn2Ge2 (R=Sm, Gd) is measured in the temperature range 10-800K by using the x-ray diffraction method. The magnetoelastic anomalies of lattice constants are found at the different kinds of spontaneous magnetic transitions. The transversal and longitudinal magnetostrictions of polycrystalline samples are measured in the pulse magnetic field up to 25T. In the external magnetic field there occurs a first-order field-induced antiferromagnetism-ferromagnetism transition in the Mn sublattice, which gives rise to a large magnetostriction. The magnitude of magnetostrictions is as large as 10-3. The transversal and longitudinal magnetostrictions have the same sign and are almost equal. This indicates that the magnetostriction is isotropic and mainly caused by the interlayer Mn-Mn exchange interaction. The experimental results are explained in the framework of a two-sublattice ferrimagnet with the negative exchange interaction in one of the sublattices by taking into account the lattice constant dependence of interlayer Mn-Mn exchange interaction.

关 键 词:稀土金属  金属互化物  磁相变
收稿时间:2001-11-23

Magnetic phase transition and the corresponding magnetostriction of intermetallic compounds RMn2Ge2 (R=Sm, Gd)
Guo Guang-Hu,Wu Ye,Zhang Hai-Bei,D A Filippov,R Z Levitin and V V Snegirev.Magnetic phase transition and the corresponding magnetostriction of intermetallic compounds RMn2Ge2 (R=Sm, Gd)[J].Chinese Physics B,2002,11(6):608-612.
Authors:Guo Guang-Hu  Wu Ye  Zhang Hai-Bei  D A Filippov  R Z Levitin and V V Snegirev
Institution:Department of Applied Physics, Central South University, Changsha 410083, China; Department of Physics, M V Lomonosov Moscow State University, Moscow 119899, Russia
Abstract:The temperature dependence of lattice constants a and c of intermetallic compounds RMn2Ge2 (R=Sm, Gd) is measured in the temperature range 10-800K by using the x-ray diffraction method. The magnetoelastic anomalies of lattice constants are found at the different kinds of spontaneous magnetic transitions. The transversal and longitudinal magnetostrictions of polycrystalline samples are measured in the pulse magnetic field up to 25T. In the external magnetic field there occurs a first-order field-induced antiferromagnetism-ferromagnetism transition in the Mn sublattice, which gives rise to a large magnetostriction. The magnitude of magnetostrictions is as large as 10-3. The transversal and longitudinal magnetostrictions have the same sign and are almost equal. This indicates that the magnetostriction is isotropic and mainly caused by the interlayer Mn-Mn exchange interaction. The experimental results are explained in the framework of a two-sublattice ferrimagnet with the negative exchange interaction in one of the sublattices by taking into account the lattice constant dependence of interlayer Mn-Mn exchange interaction.
Keywords:rare-earth intermetallics  magnetic phase transition  magnetostriction
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