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首页> 外文期刊>Journal of Experimental and Theoretical Physics >The Influence of Magnetoelastic Interaction on Structural Phase Transitions in Cubic Ferromagnetics
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The Influence of Magnetoelastic Interaction on Structural Phase Transitions in Cubic Ferromagnetics

机译:磁弹性相互作用对立方铁磁结构相变的影响

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摘要

In the framework of the Landau theory of phase transitions, the influence of the magnetoelastic interaction on structural transitions in cubic ferromagnetics with a positive first magnetic anisotropy constant is analyzed. It is shown that structural transitions are not accompanied by a reorientation of magnetization in this case. The phase diagrams of such ferromagnetics either contain a termination point of the structural transition or a critical point in which the first-order transition is replaced by a second-order one. Magnetoelastic interaction also leads to the appearance of an interval of the ferromagnetic parameters in which a coupled first-order structural-magnetic transition exists. The phase T-x diagram for Heusler Ni_(2+x)Mn_(1-x)Ga alloys is calculated, which is in good agreement with the experimental phase diagram of these alloys.
机译:在Landau相变理论的框架下,分析了磁弹性相互作用对立方铁磁中具有正的第一磁各向异性常数的结构跃迁的影响。结果表明,在这种情况下,结构转变不伴随磁化强度的重新定向。这种铁磁的相图要么包含结构转变的终止点,要么包含其中一阶跃迁被二阶跃迁所取代的临界点。磁弹性相互作用还导致出现铁磁参数的间隔,其中存在耦合的一阶结构-磁跃迁。计算出了Heusler Ni_(2 + x)Mn_(1-x)Ga合金的T-x相图,与这些合金的实验相图非常吻合。

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