4.4 Article

Effect of magnetic field on the Tc and magnetic properties for the aligned MnBi compound

期刊

SOLID STATE COMMUNICATIONS
卷 138, 期 2, 页码 104-109

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ssc.2006.01.050

关键词

magnetic-field-induced transition; MnBi compound; aligned; spin-reorientation; magnetic properties

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In the compound MnBi, a first-order transition from the paramagnetic to the ferromagnetic state can be triggered by an applied magnetic field and the Curie temperature increases nearly linearly with an increase in magnetic field by similar to 2 K/T. Under a field of 10 T, T-C increases by 20 and 22 K during heating and cooling, respectively. Under certain conditions a reversible magnetic field or temperature induced transition between the paramagnetic and ferromagnetic states can occur. A magnetic and crystallographic H-T phase diagram for MnBi is given. Magnetic properties of MnBi compound aligned in a Bi matrix have been investigated. In the low temperature phase MnBi, a spin-reorientation takes place during which the magnetic moments rotate from being parallel to the c-axis towards the basal plane at similar to 90 K. A measuring Dc magnetic field applied parallel to the c-axis of MnBi suppresses partly the spin-reorientation transition. Interestingly, the fabricated magnetic field increases the temperature of spin., and the change in magnetization for MnBi. For the sample solidified under 0.5 T, the change in magnetization is similar to 70% reorientation transition and T-s is similar to 91 K. (c) 2006 Elsevier Ltd. All rights reserved.

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