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Overview No. 145 Metamagnetic transitions, phase coexistence and metastability in functional magnetic materials

机译:概述 No. 145 功能磁性材料的中磁转变、相共存和亚稳态

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摘要

Magnetic field-induced transitions (metamagnetic transitions) play an important role in denning functionality of various classes of magnetic materials. Rare earth manganites showing colossal magnetoresistance and Gd_5(Ge_(1-x)-Si_x)_4 alloys showing a giant magnetoc-aloric effect are typical examples that are of interest to the solid-state physics, chemistry and materials science communities. The key features of the metamagnetic transitions occurring in these systems are phase coexistence and metastability. This generality is highlighted by comparing experimental results characterizing three different classes of magnetic materials. A generalized framework of disorder-influenced first-order phase transition is introduced to understand the experimental data, which have considerable bearing on the functionality of these model materials.
机译:磁场诱导跃迁(亚磁跃迁)在各种类别的磁性材料的登基功能中起着重要作用。具有巨大磁阻的稀土锰矿和具有巨大磁阻的Gd_5(Ge_(1-x)-Si_x)_4合金是固态物理、化学和材料科学界感兴趣的典型例子。这些系统中发生的超磁转变的主要特征是相共存和亚稳态。通过比较表征三种不同类别磁性材料的实验结果,突出了这种普遍性。为了理解实验数据,引入了无序影响的一阶相变的广义框架,这些实验数据对这些模型材料的功能有相当大的影响。

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