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Paradoxical magnetic cooling in a structural transition model

机译:结构转变模型中的反常磁冷却

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摘要

In contrast to the experimentally widely used isentropic demagnetization process for cooling to ultra-low temperatures we examine a particular classical model system that does not cool, but rather heats up with isentropic demagnetization. This system consists of several magnetite particles in a colloidal suspension, and shows the uncommon behavior of disordering structurally while ordering magnetically in an increasing magnetic field. For a six-particle system, we report an uncommon structural transition from a ring to a chain as a function of magnetic field and temperature.
机译:与实验中广泛使用的等熵去磁过程冷却到超低温相比,我们研究了一种特殊的经典模型系统,该系统不会冷却,而是随着等熵去磁而加热。该系统由胶体悬浮液中的几个磁铁矿颗粒组成,显示了在增加的磁场中同时有序排列时在结构上无序的不规则行为。对于六粒子系统,我们报告了从环到链的不常见结构转变,这是磁场和温度的函数。

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